Weidong Chen
Grain Legume Genetics Physiology Research
Research Plant Pathologist
Phone: (509) 335-9178
Fax: (509) 335-7692
(Employee information on this page comes from the REE Directory. Please contact your front office staff to update the REE Directory.)
Publications
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Exploring the mycovirus SsHADV-1 as a biocontrol agent of Sclerotinia white mold
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Evaluation of fungicide seed treatmnents for control of chickpea damping-off caused by metalaxyl-resistant Pythium spp. in 2022
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Chen, W., Mcgee, R.J., Vandemark, G.J. 2023. Evaluation of fungicide seed treatmnents for control of chickpea damping-off caused by metalaxyl-resistant Pythium spp. in 2022. Plant Disease Management Reports. 17:ST010.
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Unraveling the genomic reorganization of polygalacturonase-inhibiting proteins in chickpea
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Ellur, V., Wei, W., Ghogare, R., Solanki, S., Vandemark, G.J., Brueggeman, R., Chen, W. 2023. Unraveling the genomic reorganization of polygalacturonase-inhibiting proteins in chickpea. Frontiers in Genetics. 14. Article 1189329. https://doi.org/10.3389/fgene.2023.1189329.
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Viral cross-class transmission results in disease of a phytopathogenic fungus
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Deng, Y., Zhou, K., Wu, M., Zhang, J., Yang, L., Chen, W., Li, G. 2022. Viral cross-class transmission results in disease of a phytopathogenic fungus. The ISME Journal: Multidisciplinary Journal of Microbial Ecology. 16:2763-2774. https://doi.org/10.1038/s41396-022-01310-y.
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Evaluation of fungicides in seed treatment for control of chickpea damping-off caused by metalaxyl-resistant Pythium spp. 2021
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Chen, W., McGee, R.J., Vandemark, G.J. 2022. Evaluation of fungicides in seed treatment for control of chickpea damping-off caused by metalaxyl-resistant Pythium spp. 2021. Plant Disease Management Reports. 16. Article ST011. https://doi.org/10.1094/PDMR16.
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Linkage QTL mapping and genome-wide association study on resistance in chickpea to Pythium ultimum
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Agarwal, C., Chen, W., Varshney, R.K., Vandemark, G.J. 2022. Linkage QTL mapping and genome-wide association study on resistance in chickpea to Pythium ultimum. Frontiers in Genetics. 13. Article 390921. https://doi.org/10.3389/fgene.2022.945787.
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Ascochyta rabiei: A threat to global chickpea production
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Singh, R., Kumar, K., Purayannur, S., Chen, W., Verma, P. 2022. Ascochyta rabiei: A threat to global chickpea production. Molecular Plant Pathology. 23(9):1241-1261. https://doi.org/10.1111/mpp.13235.
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Sclerotinia sclerotiorum SsCut1 modulates virulence and cutinase activity
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Gong, Y., Fu, Y., Xie, J., Li, B., Chen, T., Lin, Y., Chen, W., Jiang, D., Cheng, J. 2022. Sclerotinia sclerotiorum SsCut1 modulates virulence and cutinase activity. The Journal of Fungi. 8. Article 526. https://doi.org/10.3390/jof8050526.
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Genome sequence of Sclerotinia sclerotiorum hypovirulence-associated DNA virus-1 found in the fungus Penicillium olsonii isolated from Washington state, USA
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Fu, M., Pappu, H., Vandemark, G.J., Chen, W. 2022. Genome sequence of Sclerotinia sclerotiorum hypovirulence-associated DNA virus-1 found in the fungus Penicillium olsonii isolated from Washington state, USA. Microbiology Resource Announcements. 11(4). Article e00019-22. https://doi.org/10.1128/mra.00019-22.
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Botrytis cinerea BcSSP protein is a late infection phase, cytotoxic effector
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Zhu, W., Yu, M., Xu, R., Bi, K., Xiong, C., Liu, Z., Sharon, A., Jiang, D., Wu, M., Gu, Q., Gong, L., Chen, W., Wei, W. 2022. Botrytis cinerea BcSSP protein is a late infection phase, cytotoxic effector. Journal of Experimental Botany. 24(8):3420-3435. https://doi.org/10.1111/1462-2920.15919.
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A novel alphahypovirus that infects the fungal plant pathogen Sclerotinia sclerotiorum
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Liang, W., Lu, Z., Duan, J., Jiang, D., Xie, J., Cheng, J., Fu, Y., Chen, T., Li, B., Yu, X., Chen, W., Lin, Y. 2021. A novel alphahypovirus that infects the fungal plant pathogen Sclerotinia sclerotiorum. Archives of Virology. 167:213-217. https://doi.org/10.1007/s00705-021-05315-4.
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Evaluation of fungicides in seed treatmnent for control of chickpea damping-off caused by metalaxyl-resistant Pythium spp. 2020
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Chen, W., Vandemark, G.J., Mcgee, R.J. 2021. Evaluation of fungicides in seed treatmnent for control of chickpea damping-off caused by metalaxyl-resistant Pythium spp. 2020. Plant Disease Management Reports. 15:CF219.
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Chickpea seed rot and damping-off caused by metalaxyl-resistant Pythium ultimum and its management with ethaboxam
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Wang, M., Van Vleet, S., McGee, R.J., Paulitz, T.C., Porter, L.D., Schroeder, K., Vandemark, G.J., Chen, W. 2021. Chickpea seed rot and damping-off caused by metalaxyl-resistant Pythium ultimum and its management with ethaboxam. Plant Disease. 105(6):1728-1737. https://doi.org/10.1094/PDIS-08-20-1659-RE.
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Sclerotinia White Mold. In: Compendium of Pea Diseases and Pests
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Botrytis gray mold
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Powdery Mildew
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Ascochyta blight
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Downy Mildew
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Genetic diversity and recombination in the plant pathogen Sclerotinia sclerotiorum detected in Sri Lanka
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Mahalingam, T., Chen, W., Rjapakse, C.S., Somachandra, K.P., Attanayake, R. 2020. Genetic diversity and recombination in the plant pathogen Sclerotinia sclerotiorum detected in Sri Lanka. Pathogens. 9(4):306. https://doi.org/10.3390/pathogens9040306.
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A simplified and effective technique for production of pycnidia and pycnidiospores by Macrophomina phaseolina
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Zhao, X., Ni, Y., Liu, X., Zhao, H., Wang, J., Chen, Y., Chen, W., Liu, H. 2020. A simplified and effective technique for production of pycnidia and pycnidiospores by Macrophomina phaseolina. Plant Disease. 104:1183-1187. https://doi.org/10.1094/PDIS-08-19-1795-RE.
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Phytotoxic metabolites produced by legume-associated Ascochyta and its related genera in the Dothideomycetes
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Kim, W., Chen, W. 2019. Phytotoxic metabolites produced by legume-associated Ascochyta and its related genera in the Dothideomycetes. Toxins. 11(11). Article 627. https://doi.org/10.3390/toxins11110627.
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Defective RNA of a novel mycovirus with high transmissibility detrimental to biocontrol properties of Trichoderma spp.
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You, J., Liu, X., Wu, M., Yang, L., Zhang, J., Chen, W., Li, G. 2019. Defective RNA of a novel mycovirus with high transmissibility detrimental to biocontrol properties of Trichoderma spp. Microorganisms. 7(11):507. https://doi.org/10.3390/microorganisms7110507.
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Identification of a polyketide synthase gene responsible for ascochitine biosynthesis in Ascochyta fabae and its abrogation in sister taxa
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Kim, W., Lichtenzveig, J., Syme, R.A., Berim, A., Peever, T., Hur, J., Chen, W. 2019. Identification of a polyketide synthase gene responsible for ascochitine biosynthesis in Ascochyta fabae and its abrogation in sister taxa. mSphere. 4:5. https://doi.org/10.1128/mSphere.00622-19.
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High-throughput field phenotyping of Ascochyta blight disease severity in chickpea
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Zhang, C., Chen, W., Sankaran, S. 2019. High-throughput field phenotyping of Ascochyta blight disease severity in chickpea. Crop Protection. 125. https://doi.org/10.1016/j.cropro.2019.104885.
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Saturation of genomic region implicated in resistance to Fusarium race 5 in chickpea
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Caballo, C., Madrid, E., Gil, J., Chen, W., Rubio, J., Milan, T. 2019. Saturation of genomic region implicated in resistance to Fusarium race 5 in chickpea. Molecular Breeding. 39:16. https://doi.org/10.1007/s11032-019-0932-4.
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White Mold
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Burrows, M., Chen, W., Wunsch, M. 2019. White Mold. North Dakota State University Cooperative Extension Bulletin. Online. https://www.ag.ndsu.edu/publications/crops/lentil-disease-diagnostic-series#section-10.
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Lentil Disease Diagnostic Series: Powdery Mildew
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Porter, L.D., Chen, W. 2019. Lentil Disease Diagnostic Series: Powdery Mildew. Extension Reports. PP1913.
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Stemphylium blight
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Chen, W., Wunsch, M. 2019. Stemphylium blight. North Dakota State University Cooperative Extension Bulletin. Online. https://www.ag.ndsu.edu/publications/crops/lentil-disease-diagnostic-series#section-7.
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The clcase-associated protein ChCAP is important for regulation of hyphal growth, appressorial development, penetration, pathogenicity, conidiation, intracellular cAMP level and stress tolerance in Colletotrichum higginsianum
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Zhu, W., Xu, X., Peng, F., Zhang, S., Xu, R., Chen, W., Wei, W. 2019. The clcase-associated protein ChCAP is important for regulation of hyphal growth, appressorial development, penetration, pathogenicity, conidiation, intracellular cAMP level and stress tolerance in Colletotrichum higginsianum. Plant Science. 283:1-10. https://doi.org/10.1016/j.plantsci.2019.02.012.
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Registration of 'Royal' chickpea
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Vandemark, G.J., Nelson, H., Chen, W., Mcphee, K., Muehlbauer, F. 2019. Registration of 'Royal' chickpea. Journal of Plant Registrations. 13:123-127. https://doi.org/10.3198/jpr2018.09.0059crc.
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Sclerotinia minor endornavirus 1, a novel pathogenicity debilitation-associated mycovirus with a wide spectrum of transmissibility
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Yang, D., Wu, M., Zhang, J., Chen, W., Li, G., Yang, L. 2018. Sclerotinia minor endornavirus 1, a novel pathogenicity debilitation-associated mycovirus with a wide spectrum of transmissibility. mBio. 10(11):589. https://doi.org/10.3390%2Fv10110589.
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Assessing the contribution of ethaboxam in seed treatment cocktails for the management of metalaxyl-resistant Pythium sp. in Pacific Northwest spring wheat production
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White, D., Chen, W., Schroeder, K. 2018. Assessing the contribution of ethaboxam in seed treatment cocktails for the management of metalaxyl-resistant Pythium sp. in Pacific Northwest spring wheat production. Crop Protection. 115:7-12. https://doi.org/10.1016/j.cropro.2018.08.026.
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Sclerotinia sclerotiorum populations: Clonal or recombining?
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Attanayake, R.N., Xu, L., Chen, W. 2018. Sclerotinia sclerotiorum populations: Clonal or recombining? Tropical Plant Pathology. 44:23-31. https://doi.org/10.1007/s40858-018-0248-7.
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Sclerotinia sclerotiorum: An evaluation of virulence theories
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Xu, L., Li, G., Jiang, D., Chen, W. 2018. Sclerotinia sclerotiorum: An evaluation of virulence theories. Annual Review of Phytopathology. 56:311-38. https://doi.org/10.1146/annurev-phyto-080417-050052.
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Suppressing infection cushion formation by two novel hypovirulence-associated mycoviruses in the phytopathogenic fungus Botrytis cinerea
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Hao, F., Ding, T., Wu, M., Zhang, J., Yang, L., Chen, W., Li, Q. 2018. Suppressing infection cushion formation by two novel hypovirulence-associated mycoviruses in the phytopathogenic fungus Botrytis cinerea. Viruses. 10:254. https://doi.org/10.3390%2Fv10050254.
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Downy Mildew
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Zhu, Z., Chen, W. 2018. Downy Mildew. North Dakota State University Extension Service. Online: https://www.ag.ndsu.edu/publications/crops/lentil-disease-diagnostic-series#section-9.
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Botrytis Gray Mold
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Zhu, Z., Chen, W. 2018. Botrytis gray mold. North Dakota State University Extension Service. Online: https://www.ag.ndsu.edu/publications/crops/lentil-disease-diagnostic-series#section-6.
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Advances in Ascochyta research
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Rubiales, D., Fondevilla, S., Chen, W., Davidson, J. 2018. Advances in Ascochyta research. Frontiers in Plant Science. 9. https://doi.org/10.3389/fpls.2018.00022.
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A single-nuclerotide deletion in the transcription factor gene Bcsmr1 causes formation of orange-colored sclerotia in Botrytis cinerea
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Zhou, Y., Yang, L., Wu, M., Chen, W., Li, G., Zhang, J. 2017. A single-nuclerotide deletion in the transcription factor gene Bcsmr1 causes formation of orange-colored sclerotia in Botrytis cinerea. Frontiers in Microbiology. 8:2492. https://doi.org/10.3389/fmicb.2017.02492.
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Reveromycins A and B from Streptomyces sp. 3–10: Antifungal activity against plant pathogenic fungi in vitro and in a strawberry food model system
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Lyu, A., Liu, H., Che, H., Yang, L., Zhang, J., Wu, M., Chen, W., Li, G. 2017. Reveromycins A and B from Streptomyces sp. 3–10: Antifungal activity against plant pathogenic fungi in vitro and in a strawberry food model system. Frontiers in Microbiology. 8:550.
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First report of Fusarium redolens causing Fusarium yellowing and wilt of chickpea in Tunisia
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Bouhadida, M., Jendoubi, W., Gargouri, S., Beji, M., Kharrat, M., Chen, W. 2017. First report of Fusarium redolens causing Fusarium yellowing and wilt of chickpea in Tunisia. Canadian Journal of Plant Pathology. 101:1038.
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Production of the antibiotic secondary metabolite solanapyrone A by the fungal plant pathogen Ascochyta rabiei during fruiting body formation in saprobic growth
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Kim, W., Park, J., Dugan, F.M., Gang, D., Vandemark, G.J., Peever, T., Chen, W. 2017. Production of the antibiotic secondary metabolite solanapyrone A by the fungal plant pathogen Ascochyta rabiei during fruiting body formation in saprobic growth. Environmental Microbiology. 19(5):1822-1835. https://doi.org/10.1111/1462-2920.13673.
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Three faba bean (Vicia faba L.) breeding lines appear naturally resistant to Pythium damping-off
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Hu, J., Chen, W., McGee, R.J. 2017. Three faba bean (Vicia faba L.) breeding lines appear naturally resistant to Pythium damping-off. Plant Disease Management Reports. 11:V008.
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Molecular identification of Fusarium spp. causing wilt of chickpea and the first report of Fusarium redolens in Turkey
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Tekeoglu, M., Ozkilinc, H., Tunali, B., Chen, W. 2016. Molecular identification of Fusarium spp. causing wilt of chickpea and the first report of Fusarium redolens in Turkey. Mediterranean Agricultural Sciences. 30:27-33.
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Field evaluation of fungicides for control of Ascochyta blight of chickpea, 2015
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Chen, W., Vandemark, G.J., McGee, R.J. 2016. Field evaluation of fungicides for control of Ascochyta blight of chickpea, 2015. Plant Disease Management Reports. 10:FC196.
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Field evaluation of seed treatment fungicides for control of damping-off of chickpea caused by metalaxyl-resistant Pythium spp, 2015
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Chen, W., Guy, S., McGee, R.J., Paulitz, T.C., Porter, L., Vandemark, G.J., Schroeder, K.L. 2016. Field evaluation of seed treatment fungicides for control of damping-off of chickpea caused by metalaxyl-resistant Pythium spp, 2015. Plant Disease Management Reports. 10:ST017.
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Pea Disease Diagnostic Series- Rhizoctonia seed,
seedling and root rot
- (Book / Chapter)
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Pea disease diagnostic series - White mold
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Chen, W., Porter, L., McPhee, K. 2016. Pea disease diagnostic series - White mold. North Dakota State University Cooperative Extension Bulletin. p. 1790-1811.
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Pea disease diagnostic series - Powdery Mildew
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Attanayake, R., Chen, W., Wunsch, M. 2016. Pea disease diagnostic series - Powdery Mildew. North Dakota State University Cooperative Extension Bulletin. p.1790-1798.
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Optimization of medium composition and cultural conditions for production of antifungal substances by Streptomyces platensis 3-10 and evaluation of its efficacy in suppression of clubroot disease of oilseed rape
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Shakeel, Q., Lyu, A., Zhang, J., Wu, M., Chen, S., Chen, W., Li, G., Yang, L. 2016. Optimization of medium composition and cultural conditions for production of antifungal substances by Streptomyces platensis 3-10 and evaluation of its efficacy in suppression of clubroot disease of oilseed rape. Biological Control. 101:59-68.
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Characterization of three mycoviruses co-infecting the plant pathogenic fungus Sclerotinia nivalis
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Wu, M., Deng, Y., Zhou, Z., He, G., Chen, W., Li, G. 2016. Characterization of three mycoviruses co-infecting the plant pathogenic fungus Sclerotinia nivalis. Virus Research. 223:28-38.
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Multiple criteria-based screening of Trichoderma isolates for biological control of Botrytis cinerea on tomato
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You, J., Zhang, J., Wu, M., Yang, L., Chen, W., Li, G. 2016. Multiple criteria-based screening of Trichoderma isolates for biological control of Botrytis cinerea on tomato. Biological Control. 101:31-38.
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Direct repeat-mediated DNA deletion of the mating type locus MAT1-2 genes results in unidirectional mating type switching in Sclerotinia trifoliorum
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Xu, L., Chen, W. 2016. Direct repeat-mediated DNA deletion of the mating type locus MAT1-2 genes results in unidirectional mating type switching in Sclerotinia trifoliorum. Scientific Reports. 6:27083.
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Characterization of the mycelial compatibility groups and mating type alleles in populations of Sclerotinia minor in central China
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Yang, D., Zhang, J., Wu, M., Chen, W., Li, G., Yang, L. 2016. Characterization of the mycelial compatibility groups and mating type alleles in populations of Sclerotinia minor in central China. Plant Disease. 100:2313-2318.
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Nox Complex signal and MAPK cascade pathway are cross-linked and essential for pathogenicity and conidiation of mycoparasite Coniothyrium minitans
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Wei, W., Zhu, W., Cheng, J., Xie, J., Jiang, D., Li, G., Chen, W., Fu, Y. 2016. Nox Complex signal and MAPK cascade pathway are cross-linked and essential for pathogenicity and conidiation of mycoparasite Coniothyrium minitans. Scientific Reports. 6:24325.
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Evaluation of Intego Solo (ethaboxam) for management of metalaxyl-resistant Pythium spp. in chickpea
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Schrodinger, K., Chen, W. 2016. Evaluation of Intego Solo (ethaboxam) for management of metalaxyl-resistant Pythium spp. in chickpea. Plant Disease Management Reports. 10:FC134.
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Chickpea damping-off due to metalaxyl-resistant Pythium: An emerging disease in the Palouse
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Chen, W., Van Vleet, S. 2016. Chickpea damping-off due to metalaxyl-resistant Pythium: An emerging disease in the Palouse. WSU Extension Bulletin. FS211E.
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Pulse crop diseases in the Pacific Northwest
- (Literature Review)
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Chen, W. 2016. Pulse crop diseases in the Pacific Northwest. Crops and Soils. Mar-Apr:20-26.
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Use of metabolomics for the chemotaxonomy of legume-associated Ascochyta and allied genera
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Kim, W., Peever, T., Park, J., Park, C., Gang, D., Xian, M., Davidson, J.A., Infantino, A., Chen, W. 2016. Use of metabolomics for the chemotaxonomy of legume-associated Ascochyta and allied genera. Scientific Reports. 6:20192 doi: 10.1038/srep20192.
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A diagnostic guide for Fusarium Root Rot of pea
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Porter, L., Pasche, J.S., Chen, W., Harveson, R.M. 2015. A diagnostic guide for Fusarium Root Rot of pea. Plant Health Progress. doi: 10.1094/PHP-DG-15-0013.
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Genomic analysis of Ascochyta rabiei identifies dynamic genome environments of solanapyrone biosynthesis gene cluster and a novel type of pathway-specific regulator
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Kim, W., Park, J., Gang, D.R., Peever, T., Chen, W. 2015. Genomic analysis of Ascochyta rabiei identifies dynamic genome environments of solanapyrone biosynthesis gene cluster and a novel type of pathway-specific regulator. Eukaryotic Cell. 14: 1102-1113.
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First report of sunflower white mold caused by Sclerotinia minor Jagger in Inner Mongolia region, China
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Li, M., Zhang, Y.Y., Wang, K., Hou, Y.G., Zhou, H.Y., Jin, L., Chen, W., Zhao, J. 2016. First report of sunflower white mold caused by Sclerotinia minor Jagger in Inner Mongolia region, China. Plant Disease. 100:211.
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First report of Ascochyta blight of Spotted Locoweed (Astragalus lentiginosus) caused by Ascochyta sp. in Idaho
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Habibi, A., Tobin, P., Wonyong, K., Chilvers, M., Chen, W., Kaiser Jr, W.J., Muehlbauer, F.J. 2015. First report of Ascochyta blight of Spotted Locoweed (Astragalus lentiginosus) caused by Ascochyta sp. in Idaho. Plant Disease. 99:1446.
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Production of anti-fungal volatiles by non-pathogenic Fusarium oxysporum and its efficacy in suppression of verticillium wilt of cotton
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Zhang, Q., Yang, L., Zhang, J., Wu, M., Chen, W., Jiang, D., Li, G. 2015. Production of anti-fungal volatiles by non-pathogenic Fusarium oxysporum and its efficacy in suppression of verticillium wilt of cotton. Plant and Soil. 392:101-114.
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Detection of a new QTL/gene for growth habit in chickpea CaLG1 using wide and narrow crosses
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Ali, L., Azam, S., Rubio, J., Kudapa, H., Madrid, E., Varshney, R.K., Castro, P., Chen, W., Gil, J., Milan, T. 2015. Detection of a new QTL/gene for growth habit in chickpea CaLG1 using wide and narrow crosses. Euphytica. 204:473-485.
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pH Dependency of sclerotial development and pathogenicity revealed by using genetically defined oxalate-minus mutants of Sclerotinia sclerotiorum
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Xu, L., Xiang, M., White, D., Chen, W. 2015. pH Dependency of sclerotial development and pathogenicity revealed by using genetically defined oxalate-minus mutants of Sclerotinia sclerotiorum. Environmental Microbiology. 17:2896-2909.
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Novel hypovirulence-associated RNA mycovirus in the plant pathogenic fungus botrytis cinerea: molecular and biological characterization
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Yu, L., Sang, W., Wu, M., Zhang, J., Yang, L., Zhou, Y., Chen, W., Li, G. 2015. Novel hypovirulence-associated RNA mycovirus in the plant pathogenic fungus botrytis cinerea: molecular and biological characterization. Applied and Environmental Microbiology. 81:2299-2310.
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Registration of 'Nash' Chickpea
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Vandemark, G.J., Guy, S.O., Chen, W., Mcphee, K., Pfaff, J.S., Lauver, M., Muehlbauer, F.J. 2015. Registration of 'Nash' Chickpea. Journal of Plant Registrations. doi: 10.3198/jpr2014.07.0047crc.
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Development of PCR-based assays for detecting and differentiating three species of botrytis infecting broad bean
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Fan, X., Zhang, J., Yang, L., Wu, M., Chen, W., Li, G. 2015. Development of PCR-based assays for detecting and differentiating three species of botrytis infecting broad bean. Plant Disease. 99:691-698.
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Functional analyses of the Diels-Alderase gene sol5 of Ascochyta rabiei and Alternaria solani indicate that the Solanapyrone phytotoxins are not required for pathogenicity
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Kim, W., Park, C., Park, J., Akamatsu, H.O., Peever, T., Xian, M., Gang, D.R., Vandemark, G.J., Chen, W. 2015. Functional analyses of the Diels-Alderase gene sol5 of Ascochyta rabiei and Alternaria solani indicate that the Solanapyrone phytotoxins are not required for pathogenicity. Molecular Plant-Microbe Interactions. 28:482-496.
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Achievements and challenges in legume breeding for pest and disease resistance
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Rubiales, D., Fondevilla, S., Chen, W., Gentzbittel, L., Higgins, T.J., Castillejo, M.A., Singh, K.B., Rispail, N. 2015. Achievements and challenges in legume breeding for pest and disease resistance. Critical Reviews in Plant Sciences. 34:195-236.
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What roles do fungal secondary metabolites play in interactions between Ascochyta fungi and cool season food legumes?
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Kim, W., Peever, T., Vandemark, G.J., Chen, W. 2014. What roles do fungal secondary metabolites play in interactions between Ascochyta fungi and cool season food legumes [abstract]? Food Legume Research International Conference Proceedings. Conference Abstract Book.
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Phytotoxin solanapyrone A produced by Ascochyta rabiei and Alternaria solani is nonessential for pathogenicity, but likely plays ecological roles
- (Abstract Only)
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Kim, W., Park, C., Park, J., Gang, D.R., Xian, M., Dugan, F.M., Peever, T., Chen, W. 2014. Phytotoxin solanapyrone A produced by Ascochyta rabiei and Alternaria solani is nonessential for pathogenicity, but likely plays ecological roles. Phytopathology. 104:S3.60-S3.61.
|
|
Inferring outcrossing in the homothallic fungus Sclerotinia sclerotiorum using linkage disequilibrium decay
- (Peer Reviewed Journal)
|
Attanayake, R., Tennekoon, V., Johnson, D., Porter, L., Del Río-Mendoza, L., Jiang, D., Chen, W. 2014. Inferring outcrossing in the homothallic fungus Sclerotinia sclerotiorum using linkage disequilibrium decay. Heredity. 113:353-363. doi: 10.1038/hdy.2014.37.
|
|
Degradation of oxalic acid by the mycoparasite Coniothyrium minitans plays an important role in interacting with Sclerotinia sclerotiorum
- (Peer Reviewed Journal)
|
Zeng, L., Zhang, J., Han, Y., Yang, L., Wu, M., Jiang, D., Chen, W., Li, G. 2014. Degradation of oxalic acid by the mycoparasite Coniothyrium minitans plays an important role in interacting with Sclerotinia sclerotiorum. Environmental Microbiology. 16(8):2591–2610.
|
|
Registration of CA0469C025C chickpea germplasm
- (Peer Reviewed Journal)
|
Vandemark, G.J., Muehlbauer, F.J., Mihov, M., Chen, W., Mcphee, K., Chengci, C. 2014. Registration of CA0469C025C chickpea germplasm. Journal of Plant Registrations. 8:303-307. doi: 10.3198/jpr2013.09.0057crg.
|
|
Towards Managing Stemphylium Blight of Lentil in the Pacific Northwest
- (Trade Journal)
|
Chen, W., Mcgee, R.J., Vandemark, G.J., Wunsch, M., Burrows, M.E. 2013. Towards Managing Stemphylium Blight of Lentil in the Pacific Northwest. Trade Journal Publication. 3:13-15.
|
|
Disease Alert: Stemphylium Blight
- (Popular Publication)
|
Chen, W. 2013. Disease Alert: Stemphylium Blight. Pulse Pipeline. XIII:4.
|
|
First report of dodder (Cuscuta pentagona) on chickpea (Cicer arietinum) in the United States
- (Abstract Only)
|
Chen, W., Dugan, F.M., McGee, R.J. 2014. First report of dodder (Cuscuta pentagona) on chickpea (Cicer arietinum) in the United States [abstract]. Plant Disease. 98(1):165. DOI: dx.doi.org/10.1094/PDIS-03-13-0334-PDN.
|
|
Resistance to Fusarium wilt in chickpea
- (Peer Reviewed Journal)
|
Chen, W., Castro, P., Cobos, M. 2014. Resistance to Fusarium wilt in chickpea. Grain Legumes. 3:23-24.
|
|
Comparative transcriptome analysis between the necrotrophic pathogens Sclerotina sclerotiorum and S. trifoliorum
- (Abstract Only)
|
Qiu, D., Vandemark, G.J., Chen, W. 2013. Comparative transcriptome analysis between the necrotrophic pathogens Sclerotina sclerotiorum and S. trifoliorum. Acta Phytopathologica Sinica. 43 (Suppl.):227.
|
|
Investigating the role of solanapyrone toxins in Ascochyta blight using toxin-deficient mutants of Asochyta rabiei
- (Abstract Only)
|
Kim, W., Akamatsu, H.O., Peever, T., Vandemark, G.J., Chen, W. 2013. Investigating the role of solanapyrone toxins in Ascochyta blight using toxin-deficient mutants of Asochyta rabiei. First Legume Society Conference Abstract Book. May 9-11, 2013, Novi Sad, Serbia. 203.
|
|
Pair-wise linkage disequilibrium decay among linked loci suggests meiotic recombination in natural populations of Sclerotinia sclerotiorum
- (Abstract Only)
|
Attanayake, R., Chen, W. 2013. Pair-wise linkage disequilibrium decay among linked loci suggests meiotic recombination in natural populations of Sclerotinia sclerotiorum. Fungal Genetics Reports. 60 (Suppl): 680.
|
|
Oxalate-minus mutants of Sclerotinia sclerotiorum via T-DNA insertion accumulate fumarate in culture and retain pathogenicity on plants
- (Abstract Only)
|
Xu, L., Xiang, M., White, D., Chen, W. 2013. Oxalate-minus mutants of Sclerotinia sclerotiorum via T-DNA insertion accumulate fumarate in culture and retain pathogenicity on plants. Fungal Genetics Reports. 60 (Suppl): 598.
|
|
Nonhost-specific phytotoxicity of the polyketide-derived toxin solanapyrone A produced by Ascochyta rabiei and Alternaria solani
- (Abstract Only)
|
Kim, W., Tymon, L., Johnson, D., Chen, W. 2013. Nonhost-specific phytotoxicity of the polyketide-derived toxin solanapyrone A produced by Ascochyta rabiei and Alternaria solani. Fungal Genetics Reports. 60 (Suppl): 615.
|
|
Genetic diversity and population differentiation of Sclerotinia sclerotiorum collected from canola in China and in USA
- (Peer Reviewed Journal)
|
Kithul-Pelage, R.A., Carter, P.A., Jiang, D., Del Rio Mendoza, L., Chen, W. 2013. Genetic diversity and population differentiation of Sclerotinia sclerotiorum collected from canola in China and in USA. Phytopathology. 103:750-761.
|
|
Rhizoctonia root rot of lentil
- (Popular Publication)
|
Chen, W., Paulitz, T.C., Mcgee, R.J. 2013. Rhizoctonia root rot of lentil. Pulse Pipeline. XII:2.
|
|
Field evaluation of fungicides in controlling chickpea Ascochyta blight in Washington, 2011
- (Peer Reviewed Journal)
|
Chen, W., Mcgee, R.J., Vandemark, G.J. 2013. Field evaluation of fungicides in controlling chickpea Ascochyta blight in Washington, 2011. Plant Disease Management Reports. 7:FC064.
|
|
Random T-DNA mutagenesis identifies a Cu-Zn-superoxide dismutase gene as a virulence factor of Sclerotinia sclerotiorum
- (Peer Reviewed Journal)
|
Xu, L., Chen, W. 2013. Random T-DNA mutagenesis identifies a Cu-Zn-superoxide dismutase gene as a virulence factor of Sclerotinia sclerotiorum. Molecular Plant-Microbe Interactions. 26:431-441.
|
|
What lies beneath, unraveling the mysteries of Rhizoctonia and Pythium
- (Trade Journal)
|
Okubara, P.A., Schroeder, K., Paulitz, T.C., Chen, W. 2012. What lies beneath, unraveling the mysteries of Rhizoctonia and Pythium. Wheat Life. p. 56-59.
|
|
Chapter 11: Disease resistance in chickpea
- (Book / Chapter)
|
Millan, T., Madrid, E., Imitiaz, M., Kharrat, M., Chen, W. 2013. Chapter 12: Disease resistance in chickpea. Book Chapter. Volume 1.
|
|
Genetic and phenotypic diversity and random association of DNA markers of the fungal plant pathogen Sclerotinia sclerotiorum from soil on a fine geographic scale.
- (Peer Reviewed Journal)
|
Attanayake, R., Porter, L., Johnson, D., Chen, W. 2012. Genetic and phenotypic diversity and random association of DNA markers of the fungal plant pathogen Sclerotinia sclerotiorum from soil on a fine geographic scale.. Soil Biology and Biochemistry. 55:28-36.
|
|
Production of phytotoxin solanapyrones and generation of solanapyrone-deficient mutants in Ascochyta rabiei
- (Abstract Only)
|
Kim, W., Chen, W. 2012. Production of phytotoxin solanapyrones and generation of solanapyrone-deficient mutants in Ascochyta rabiei. Phytopathology. 102:54-64.
|
|
Transcriptome analyses of Sclerotinia sclerotiorum infecting chickpea and lentil using RNA sequencing
- (Abstract Only)
|
Qiu, D., Vandemark, G.J., Chen, W. 2012. Transcriptome analyses of Sclerotinia sclerotiorum infecting chickpea and lentil using RNA sequencing. Phytopathology. 102:S4.95-S4.96.
|
|
Detection of intrachromosomal recombination in Sclerotinia sclerotiorum populations
- (Abstract Only)
|
Attanayake, R., Chen, W. 2012. Detection of intrachromosomal recombination in Sclerotinia sclerotiorum populations. Phytopathology. 102:S4.7.
|
|
Pythium Root Rot (and Feeder Root Necrosis)
- (Book / Chapter)
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|
|
Developing a method to scale up production of solanapyrone toxins by Ascochyta rabiei
- (Abstract Only)
|
|
|
Comparison of transcriptomes between Sclerotinia sclerotiorum and S. trifoliorum using 454 Titanium RNA sequencing
- (Abstract Only)
|
|
|
Rhizoctonia root rot of lentil caused by Rhizoctonia solani AG 2-1
- (Abstract Only)
|
|
|
Insertional mutation at the Cu-Zn-superoxide dismutase gene reduces virulence of Sclerotinia sclerotiorum on pea (Pisum sativum)
- (Abstract Only)
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|
|
Characterization of Ascochyta rabiei for population structure, mating type and pathogenic variability from Pakistan and United States
- (Abstract Only)
|
Ali, H., Alam, S.S., Attanayake, R.N., Rahman, M., Chen, W. 2012. Characterization of Ascochyta rabiei for population structure, mating type and pathogenic variability from Pakistan and United States. International Ascochyta Workshop. Page 28.
|
|
Clonostachys rhizophaga and other fungi from chickpea debris in the Palouse region of the Pacific Northwest, USA
- (Peer Reviewed Journal)
|
Dugan, F.M., Lupien, S.L., Chen, W. 2012. Clonostachys rhizophaga and other fungi from chickpea debris in the Palouse region of the Pacific Northwest, USA. North American Fungi. 7(6): 1-11.
|
|
Identification of solanapyrone biosynthesis genes and generation of solanapyrone-deficient mutants in Ascochyta rabiei
- (Abstract Only)
|
Kim, W., Akamatsu, H.O., Peever, T., Vandemark, G.J., Chen, W. 2012. Identification of solanapyrone biosynthesis genes and generation of solanapyrone-deficient mutants in Ascochyta rabiei. International Ascochyta Workshop. Page 52.
|
|
Applying RNA Sequencing to investigate pathogenic mechanisms of Ascochyta rabiei
- (Abstract Only)
|
Qiu, D., Vandemark, G.J., Chen, W. 2012. Applying RNA Sequencing to investigate pathogenic mechanisms of Ascochyta rabiei. International Ascochyta Workshop. Page 27.
|
|
Genetic of virulence in Ascochyta rabiei
- (Peer Reviewed Journal)
|
Peever, T., Chen, W., Adbo, Z., Kaiser Jr, W.J. 2012. Genetic of virulence in Ascochyta rabiei. Plant Pathology. 61: 754-760. DOI: 10.1111/j.1365-3059.2011.02566.x.
|
|
Compatibility of Coniothyrium minitans with Compound Fertilizer in Suppressionof Sclerotinia sclerotiorum
- (Peer Reviewed Journal)
|
Yang, L., Li, G., Zhang, J., Jiang, D., Chen, W. 2011. Compatibility of Coniothyrium minitans with Compound Fertilizer in Suppressionof Sclerotinia sclerotiorum. Biological Control. 59:221-227.
|
|
Validation of molecular markers for resistance among Pakistani chickpea germplasm to races of Fusarium oxysporum f. sp. ciceris
- (Peer Reviewed Journal)
|
Ali, H., Haq, A., Shah, T., Chen, W. 2012. Validation of molecular markers for resistance among Pakistani chickpea germplasm to races of Fusarium oxysporum f. sp. ciceris. European Journal of Plant Pathology. 132:237-244. DOI 10.1007/s10658-011-9868-1.
|
|
A BAC/BIBAC-based physical map of chickpea, Cicer arietinum L.
- (Peer Reviewed Journal)
|
Zhang, X., Scheuring, C.F., Zhang, M., Dong, J.J., Zhang, Y., Huang, J.J., Lee, M., Abbo, S., Sherman, A., Shtienberg, D., Chen, W., Muehlbauer, F.J., Zhang, H. 2011. A BAC/BIBAC-based physical map of chickpea, Cicer arietinum L.. Biomed Central (BMC) Genomics. 11:501.
|
|
Lentil diseases: A threat to lentil production worldwide
- (Peer Reviewed Journal)
|
Chen, W. 2011. Lentil diseases: A threat to lentil production worldwide. Grain Legumes. 57:35-36.
|
|
Ascospore dimorphism-associated mating types of Sclerotinia trifoliorum equally capable of infecting chickpea
- (Peer Reviewed Journal)
|
Njambere, E., Chen, W., Frate, C., Temple, S. 2011. Ascospore dimorphism-associated mating types of Sclerotinia trifoliorum equally capable of infecting chickpea. Australasian Plant Pathology. 40:648-655. DOI 10.1007/s13313-011-0069-3.
|
|
Potential alternative hosts for the pea powdery mildew pathogen Erysiphe trifolii
- (Peer Reviewed Journal)
|
Attanayake, R., Glawe, D., Mcphee, K., Dugan, F.M., Chen, W. 2011. Potential alternative hosts for the pea powdery mildew pathogen Erysiphe trifolii. Pisum Genetics. 42:18-20.
|
|
Oxalate-minus mutants of Sclerotinia sclerotiorum via random mutagenesis retain pathogenicity
- (Abstract Only)
|
Xu, L., Meichun, X., White, D., Chen, W. 2011. Oxalate-minus mutants of Sclerotinia sclerotiorum via random mutagenesis retain pathogenicity. Phytopathology. 101:S104.
|
|
Comparative transcriptome analysis in Sclerotinia sclerotiorum and S. trifoliorum by 454 Titanium RNA sequencing
- (Abstract Only)
|
Qiu, D., Vandemark, G.J., Chen, W. 2011. Comparative transcriptome analysis in Sclerotinia sclerotiorum and S. trifoliorum by 454 Titanium RNA sequencing. Phytopathology. 101:S148.
|
|
Genetic diversity and population differentiation of Sclerotinia sclerotiorum collected from canola in China and in USA
- (Abstract Only)
|
Attanayake, R., Jiang, D., De Rio Mendoza, L., Chen, W. 2011. Genetic diversity and population differentiation of Sclerotinia sclerotiorum collected from canola in China and in USA. Phytopathology. 101:S10.
|
|
Comparative analyses of endogenous Small RNAs in Sclerotinia sclerotiorum and S. trifoliorum
- (Abstract Only)
|
Qiu, D., Vandemark, G.J., Chen, W. 2011. Comparative analyses of endogenous Small RNAs in Sclerotinia sclerotiorum and S. trifoliorum. Phytopathology. 101:S148.
|
|
Random T-DNA mutagenesis identifies a Cu-Zn-superoxide dismutase gene as a virulence factor of Sclerotinia sclerotiorum
- (Abstract Only)
|
Xu, L., Chen, W. 2011. Random T-DNA mutagenesis identifies a Cu-Zn-superoxide dismutase gene as a virulence factor of Sclerotinia sclerotiorum. Phytopathology. 101:S104.
|
|
Characterization and genetic analysis of an EIN4-like sequence
(CaETR-1) located in QTL ARI implicated in Ascochyta blight resistance in chickpea
- (Peer Reviewed Journal)
|
Madrid, E., Rajesh, P., Millan, T., Chen, W. 2011. Characterization and genetic analysis of an EIN4-like sequence (CaETR-1) located in QTL ARI implicated in Ascochyta blight resistance in chickpea. Plant Cell Reports. 31:1033-1042. DOI 10.1007/s00299-011-1221-9.
|
|
Population structure and mating type distribution of the chickpea blight pathogen Ascochyta rabiei from Pakistan and United States
- (Peer Reviewed Journal)
|
Ali, H., Alam, S., Attanayake, R., Rahman, M., Chen, W. 2012. Population structure and mating type distribution of the chickpea blight pathogen Ascochyta rabiei from Pakistan and United States. Journal of Plant Pathology. 94(1):99-108.
|
|
Ascochyta blight of peas
- (Peer Reviewed Journal)
|
Skoglund, L. G., Harveson, R. M., Chen, W., Dugan, F., Schwartz, H. F., Markell, S. G., Porter, L., Burrows, M. L., and Goswami, R. 2011. Ascochyta blight of peas. Plant Health Progress DOI: 10.1094/PHP-2011-0330-01-RS
|
|
Genetic and phenotypic diversity of Sclerotinia sclerotiorum on a small geographic scale
- (Abstract Only)
|
Attanyake, R., Porter, L., Johnson, D., Chen, W. 2011. Genetic and phenotypic diversity of Sclerotinia sclerotiorum on a small geographic scale. Fungal Genetics Reports. 58:214.
|
|
Ascochyta blight of chickpeas
- (Peer Reviewed Journal)
|
Harveson, R. M., Markell, S. G., Goswami, R., Urrea, C. A., Burrows, M. E., Dugan, F., Chen, W., and Skoglund, L. G. 2011. Ascochyta blight of chickpeas. Plant Health Progress DOI: 10.1094/PHP-2011-0103-01-DG.
|
|
Black streak root rot of lentil
- (Book / Chapter)
|
Chen, W., Paulitz, T.C. 2011. Black Streak Root Rot of Lentil. In: Chen, W., Sharma, H.C.; Muehlbauer, F.J., editors. Compendium of Chickpea and Lentil Diseases and Pests. St Paul, MN: The American Phytopathological Society. p. 12-13.
|
|
Fusarium wilt of lentil
- (Book / Chapter)
|
Chen, W., Bayaa, B. 2011. Fusarium wilt of lentil. In: Chen, W., Sharma, H.C.; Muehlbauer, F.J., editors. Compendium of Chickpea and Lentil Diseases and Pests. St Paul, MN: The American Phytopathological Society. p. 20-22.
|
|
Powdery mildew of chickpea
- (Book / Chapter)
|
Dugan, F.M., Attanayake, K., Glawe, D., Chen, W. 2011. Powdery Mildew of Chickpea. Compendium of Chickpea and Lentil Diseases and Pests. p. 51-52.
|
|
Powdery mildew of lentil
- (Book / Chapter)
|
Attanayake, K., Chen, W., Glawe, D., Dugan, F.M. 2011. Powdery mildew of lentil. Compendium of Chickpea and Lentil Diseases and Pests. p. 49-51.
|
|
Dry root rot of chickpea
- (Book / Chapter)
|
Chen, W. 2011. Dry root rot of chickpea. Compendium of Chickpea and Lentil Diseases and Pests. p. 15-16.
|
|
Downy mildews
- (Book / Chapter)
|
Chen, W., Manjarrez-Sandoval, P. 2011. Downy mildews. Compendium of Chickpea and Lentil Diseases and Pests. p. 48-49.
|
|
Other fungal diseases of chickpea and lentil
- (Book / Chapter)
|
Chen, W. 2011. Other fungal diseases of chickpea and lentil. In: Chen, W., Sharma, H.C.; Muehlbauer, F.J., editors. Compendium of Chickpea and Lentil Diseases and Pests. St Paul, MN: The American Phytopathological Society. p. 62-63.
|
|
Sclerotinia stem and crown rot of chickpea
- (Book / Chapter)
|
Njambere, E., Chen, W. 2011. Sclerotinia stem and crown rot of chickpea. Compendium of Chickpea and Lentil Diseases and Pests. p. 55-58.
|
|
Collar rot
- (Book / Chapter)
|
Njambere, E., Chen, W. 2011. Collar rot. In: Chen, W., Sharma, H.C.; Muehlbauer, F.J., editors. Compendium of Chickpea and Lentil Diseases and Pests. St Paul, MN: The American Phytopathological Society. p. 13-15.
|
|
Alternaria blight
- (Book / Chapter)
|
Chen, W. 2011. Alternaria blight. In: Chen, W., Sharma, H.C.; Muehlbauer, F.J., editors. Compendium of Chickpea and Lentil Diseases and Pests. St Paul, MN: The American Phytopathological Society. p. 30-31.
|
|
Ascochyta blight of chickpea
- (Book / Chapter)
|
Bayaa, B., Chen, W. 2011. Ascochyta blight of chickpea. Compendium of Chickpea and Lentil Diseases and Pests. p. 34-40.
|
|
Mysterious Chickpea Disease
- (Research Notes)
|
Chen, W., Vandemark, G.J. 2010. Mysterious Chickpea Disease. Pulse Pipeline. Vol:10, Issue 5.
|
|
Inheritance and linkage map positions of genes conferring resistance to stemphylium blight in lentil
- (Peer Reviewed Journal)
|
Saha, G., Sarker, A., Chen, W., Vandemark, G.J., Muehlbauer, F.J. 2010. Inheritance and linkage map positions of genes conferring resistance to stemphylium blight in lentil. Crop Science. 50 (5):1831-1839.
|
|
Identification of markers associated with genes for rust resistance in lens culinaris medik
- (Peer Reviewed Journal)
|
Saha, G., Sarker, A., Chen, W., Vandemark, G.J., Muehlbauer, F.J. 2010. Identification of markers associated with genes for rust resistance in lens culinaris medik. Euphytica. 175 (2):261-265.
|
|
Ersiphe trifolii-a newly recognized powdery mildew pathogen of pea.
- (Peer Reviewed Journal)
|
|
|
Applications of molecular markers and DNA sequences in identifying fungal pathogens of cool season grain legumes
- (Book / Chapter)
|
Njambere, E., Attanayake, R., Chen, W. 2010. Applications of molecular markers and DNA sequences in identifying fungal pathogens of cool season grain legumes. In: Gherbawy, Y. and Voigt, K., editors. Current Advances in Molecular Fungal Identification. Berlin: Springer. p 79-92.
|
|
Erysiphe trifolii causing powdery mildew of lentil (Lens culinaris)
- (Peer Reviewed Journal)
|
Attanayake, R., Glawe, D., Dugan, F.M., Chen, W. 2009. Erysiphe trifolii causing powdery mildew of lentil (Lens culinaris). Plant Disease.93:797-803.
|
|
Biochemical and molecular characterization of insertional mutants of Scleortinia sclerotiorum
- (Abstract Only)
|
Xiang, M., Wang, X., Chen, W. 2009. Biochemical and molecular characterization of insertional mutants of Scleortinia sclerotiorum. Proceedings of the International Sclerotinia Workshop.
|
|
Development and characterization of microsatellite markers in Sclerotinia trifoliorum
- (Abstract Only)
|
Njambere, E., Vandemark, G.J., Chen, W. 2009. Development and characterization of microsatellite markers in Sclerotinia trifoliorum. Proceedings of the International Sclerotinia Workshop.
|
|
Variation in fungicide sensitivity between two field populations of Sclerotinia sclerotiorum
- (Abstract Only)
|
Attanayake, R., Johnson, D., Porter, L., Chen, W. 2009. Variation in fungicide sensitivity between two field populations of Sclerotinia sclerotiorum. Proceedings of the International Sclerotinia Workshop.
|
|
Identifying pathogenic determinants of Ascochyta rabiei via genetic complementation
- (Abstract Only)
|
White, D., Chen, W. 2009. Identifying pathogenic determinants of Ascochyta rabiei via genetic complementation. Meeting Abstract.
|
|
Applications of Suppression Subtractive Hybridization (SSH) in Identifying differentially expressed transcripts in Ascochyta rabiei
- (Abstract Only)
|
White, D., Vandemark, G.J., Chen, W. 2009. Applications of Suppression Subtractive Hybridization (SSH) in Identifying differentially expressed transcripts in Ascochyta rabiei. Meeting Abstract.
|
|
Genetic diversity of Sclerotinia trifoliorum infecting chickpea based on mycelial compatibility grouping, rDNA introns and multi-locus haplotypes
- (Abstract Only)
|
Njambere, E., Vandemark, G.J., Chen, W. 2009. Genetic diversity of Sclerotinia trifoliorum infecting chickpea based on mycelial compatibility grouping, rDNA introns and multi-locus haplotypes. Phytopathology. 99:S94
|
|
Application of complementation tests in identifying pathogenicity determinants of the chickpea pathogen Ascochyta rabiei
- (Abstract Only)
|
White, D., Chen, W. 2009. Application of complementation tests in identifying pathogenicity determinants of the chickpea pathogen Ascochyta rabiei.Phytopathology. 99:S141
|
|
Potential alternative hosts for a powdery mildew on pea
- (Abstract Only)
|
Attanayake, K., Glawe, D., Dugan, F.M., Chen, W. 2009. Potential alternative hosts for a powdery mildew on pea. Phytopathology.99:S5
|
|
Development and characterization of microsatellite markers of the fungal plant pathogen Sclerotinia trifoliorum
- (Peer Reviewed Journal)
|
Njambere, E., Vandemark, G.J., Chen, W. 2010. Development and characterization of microsatellite markers of the fungal plant pathogen Sclerotinia trifoliorum. Genome. 53:494-200.
|
|
Impact, symptoms and management of chickpea Ascochyta.
- (Other)
|
Chen, W. 2009. Impact, symptoms and management of chickpea Ascochyta.. Pulse Pipeline. 8(34):2.
|
|
The Importance of Reporting New Host-Fungus Records for Ornamental and Regional Crops
- (Review Article)
|
Dugan, F.M., Glawe, D.A., Attanayake, R.N., Chen, W. 2009. The Importance of Reporting New Host-Fungus Records for Ornamental and Regional Crops. APS Net Plant Pathology Online. Plant Health Progress doi:10.1094/PHP-2009-0512-01-RV.
|
|
Diseases and Their Management
- (Book / Chapter)
|
Chen, W., Basandrai, A., Basandrai, D., Banniza, S., Bayaa, B., Buchwaldt, L., Davidson, J., Larsen, R.C., Rubiales, D., Taylor, P. 2009. Diseases and Their Management, pages 262-281 in: The Lentil: Botany, Production and Uses, Erskine, W., Muehlbauer, F.J., Sarker, A. and Sharma, B. (eds.). CAB International, Oxfordshire, United Kingdom.
|
|
Ascochyta blight of chickpea reduced 38% by application of Aureobasidium pullulans (anamorphic Dothioraceae, Dothideales) to post harvest debris.
- (Peer Reviewed Journal)
|
Dugan, F.M., Akamatsu, H., Lupien, S.L., Chen, W., Chilvers, M., Peever, T.L. 2009. Ascochyta blight of chickpea reduced 38% by application of Aureobasidium pullulans (anamorphic Dothioraceae, Dothideales) to post harvest debris. Biocontrol Science and Technology 19:537-545.
|
|
Chickpea Diseases: Ecology and Control
- (Peer Reviewed Journal)
|
Chen, W. 2008. Chickpea Diseases: Ecology and Control. Encyclopedia of Pest Management, 1:1,1-5.
|
|
Ascochyta blight and insect pests of chickpeas in the Palouse
- (Other)
|
Chen, W., Clement, S.L. 2008. Ascochyta blight and insect pests of chickpeas in the Palouse. Hinriches Trading Company Newsletter.
|
|
Chickpea Ascochyta blight and insects
- (Other)
|
Chen, W., Clement, S.L. 2008. Chickpea Ascochyta blight and insects. Pulse Pipeline.
|
|
Application of mycelial compatibility grouping in studying intra-field spread of Sclerotinia trifoliorum in a chickpea field
- (Abstract Only)
|
Njambere, E., Chen, W., Frate, ., Temple, S. 2008. Application of mycelial compatibility grouping in studying intra-field spread of Sclerotinia trifoliorum in a chickpea field. Phytopathology.78(6):S114
|
|
Genetic diversity of Sclerotinia sclerotiorum from various crops from the US Pacific Northwest
- (Abstract Only)
|
Chen, W., Porter, L., Johnson, D. 2008. Genetic diversity of Sclerotinia sclerotiorum from various crops from the US Pacific Northwest. Phytopathology.78(6):S35
|
|
Taxonomic complexity of powdery mildew pathogens found on lentil and pea in the US Pacific Northwest
- (Abstract Only)
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Attanayake, K., Dlawe, D., Mcphee, K.E., Dugan, F.M., Chen, W. 2008. Taxonomic complexity of powdery mildew pathogens found on lentil and pea in the US Pacific Northwest. Phytopathology.78(6):S15
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Application of subtractive suppression hybridization in studying differentially expressed genes between pathotypes of Ascochyta rabiei.
- (Abstract Only)
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White, D., Chen, W. 2008. Application of subtractive suppression hybridization in studying differentially expressed genes between pathotypes of Ascochyta rabiei.. Phytopathology.97:S170
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Genetic diversity of Sclerotinia sclerotiorum from various crops from the U.S. Pacific Northwest
- (Abstract Only)
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Chen, W., Porter, L., Johnson, D. 2008. Genetic diversity of Sclerotinia sclerotiorum from various crops from the U.S. Pacific Northwest. Phytopathology. 98: S35.
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Stem and Crown Rot of Chickpea in California Caused by Sclerotinia trifoliorum
- (Peer Reviewed Journal)
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Njambere, E.N., Chen, W., Frate, C., Wu, B., Temple, S.R., Muehlbauer, F.J. 2008. Stem and Crown Rot of Chickpea in California Caused by Sclerotinia trifoliorum. Plant Disease.92:917-922.
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Uses, consumption, and utilization.
- (Book / Chapter)
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Yadav, S.S., Longnecker, N., Dusunceli, F., Bejiga, M., Yadav, M., Rizi, A.H., Manahor, M., Reddy, A.A., Xaxiao, Z., Chen, W. 2007. Uses, consumption, and utilization. Book Chapter. p. 72-100.
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Baseline Sensitivity of Ascochyta rabiei to Azoxystrobin, Pyraclostrobin, and Boscalid
- (Peer Reviewed Journal)
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Wise, K.A., Bradley, C.A., Pasche, J.S., Gudmestad, N.C., Dugan, F.M., Chen, W. 2008. Baseline Sensitivity of Ascochyta rabiei to Azoxystrobin, Pyraclostrobin, and Boscalid. Plant Disease.92:295-300.
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Lentil Diseases
- (Book / Chapter)
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Taylor, P., Lindbeck, K., Chen, W., Ford, R. 2007. Diseases Management. Lentil: An Ancient Crop for Modern Times. p. 291-313.
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Resistance to ascochyta blights of cool season food legumes.
- (Peer Reviewed Journal)
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Muehlbauer, F.J., Chen, W. 2007. Resistance to ascochyta blights of cool season food legumes.. European Journal of Plant Pathology.
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Disease Alert: Chickpea Ascochyta blight has shown up early
- (Other)
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Chen, W. 2007. Disease Alert: Chickpea Ascochyta blight has shown up early. Pulse Pipeline. 7(18):4.
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First report of powdery mildew of chickpea (Cicer arietinum) caused by Leveillula taurica in Washington State
- (Peer Reviewed Journal)
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Attanayake, K., Glawe, D., Mcphee, K.E., Dugan, F.M., Chen, W. 2008. First report of powdery mildew of chickpea (Cicer arietinum) caused by Leveillula taurica in Washington State. Plant Health Progress.doi:10.1094/PHP-2008-0702-01-BR.
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Towards identifying pathogenic determinants of the chickpea pathogen Ascochyta rabiei.
- (Peer Reviewed Journal)
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White, D., Chen, W. 2007. Towards identifying pathogenic determinants of the chickpea pathogen Ascochyta rabiei.. European Journal of Plant Pathology.
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Genetic diversity and population differentiation of natural populations of Sclerotinia sclerotiorum on lentils in eastern Washington.
- (Abstract Only)
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Wang, X., Chen, W. 2007. Genetic diversity and population differentiation of natural populations of Sclerotinia sclerotiorum on lentils in eastern Washington.. Phytopathology.
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Didymella rabiei primary inoculum release from chickpea debris in relation to weather variables in the Pacific Northwest of the United States.
- (Peer Reviewed Journal)
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Chilvers, M., Peever, T., Akamatsu, H., Chen, W., Muehlbauer, F.J. 2008. Didymella rabiei primary inoculum release from chickpea debris in relation to weather variables in the Pacific Northwest of the United States. Canadian Journal of Plant Pathology. 2007. 29: 4, 365-371. 33 ref.
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Field evaluation of fungicides for control of Ascochyta blight of chickpea, 2006.
- (Peer Reviewed Journal)
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Chen, W., Mcphee, K.E., Muehlbauer, F.J. 2007. Field evaluation of fungicides for control of Ascochyta blight of chickpea, 2006.. Plant Disease Management Reports.
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White Mold of Chickpea
- (Popular Publication)
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Chen, W. 2007. White Mold of Chickpea. Internet Web Page.
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Chickpea Farmers
- (Book / Chapter)
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Kumar, J., Dusunceli, F., Knights, T., Materne, M., Warkentin, T., Chen, W., Gaur, P., Bejiga, G., Yadav, S., Satyanarayana, A. 2007. Chickpea Farmers. Book Chapter in Chickpea Breeding and Management. p.602-616.
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Disease and their management.
- (Book / Chapter)
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Singh, G., Chen, W., Rubiales, D., Moore, K., Sharma, Y. 2007. Disease and their management. Book Chapter in Chickpea Breeding and Management. p. 497-519.
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Chickpea Breeding and Management
- (Book / Chapter)
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Yadav, S.S., Redden, B., Chen, W., Sharma, B. 2007. Chickpea Breeding and Management. Complete Book.
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REGISTRATION OF 'DYLAN' CHICKPEA
- (Peer Reviewed Journal)
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Muehlbauer, F.J., Temple, S.R., Chen, W. 2006. Registration of 'Dylan' chickpea. Crop Science. 46:2705.
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Diversity of Sclerotinia isolates from chickpea from central California.
- (Abstract Only)
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Njambere, E., Chen, W., Frate, C., Temple, S., Muehlbauer, F.J. 2006. Diversity of Sclerotinia isolates from chickpea from central California. Phytopathology 96:S85.
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Release of Didymella rabiei ascospores from infested chickpea debris in relation to weather variables in the Pacific Northwest of the USA.
- (Abstract Only)
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Chilvers, M., Peever, T., Akamatsu, H., Chen, W., Muehlbauer, F.J., Alldredge, R. 2006. Release of Didymella rabiei ascospores from infested chickpea debris in relation to weather variables in the Pacific Northwest of the USA. Phytopathology 96:S23.
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Construction of the first phage library of chickpea blight pathogen Ascochyta rabiei.
- (Abstract Only)
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White, D., Chen, W. 2006. Construction of the first phage library of chickpea blight pathogen Ascochyta rabiei. Inoculum 57:39.
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|
SENSITIVITY OF ASCOCHYTA RABIEI BASELINE ISOLATES TO AZOXYSTROBIN, PYRACLOSTROBIN, AND BOSCALID
- (Abstract Only)
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CONSTRUCTION OF A PHAGE LIBRARY OF ASCOCHYTA RABIEE
- (Abstract Only)
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White, D.J., Chen, W. 2006. Construction of a phage library of ascochyta rabiee. Meeting Abstract.
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EVIDENCE OF MINOR GENES IN CHICKPEA 'SPANISH WHITE' FOR RESISTANCE TO ASCOCHYTA RABIEI PATHOTYPE II
- (Abstract Only)
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Chen, W., Muehlbauer, F.J. 2006. Evidence of minor genes in chickpea 'spanish white' for resistance to ascochyta rabiei pathotype ii. Meeting Abstract.
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SEED TREATMENT WITH SYSTEMIC FUNGICIDE PREVENTS FOLIAR INFECTION OF CHICKPEA BY ASCOCHYTA RABIEI
- (Abstract Only)
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Chen, W., Mcphee, K.E., Muehlbauer, F.J. 2006. Seed treatment with systemic fungicide prevents foliar infection of chickpea by ascochyta rabiei. Meeting Abstract.
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GENETIC TRANSFORMATION OF ASCOCHYTA RABIEI USING AGROBACTERIUM-MEDIATED TRANSFORMATION
- (Peer Reviewed Journal)
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White, D., and Chen, W. 2006. Genetic transformation of Ascochyta rabiei using Agrobacterium-mediated transformation. Current Genetics 49:272-280.
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APPLICATION OF MOLECULAR MARKERS IN COOL SEASON FOOD LEGUME BREEDING
- (Proceedings)
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Coyne, C.J., Baum, M., Sharma, P.C., Gaur, P.M., Muehlbauer, F.J., Mcphee, K.E., Chen, W., Timmerman-Vaughan, G.M., Pilet-Nayel, M., Brown, A., Mcgee, R.J., Udupa, S.M., Hamwieh, A., Choumane, W. 2005. Application of molecular markers in cool season food legume breeding. Proceedings of the International Food Legume Research Conference IV, October 18-22, 2005, New Delhi, India. p. 1-29.
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DEVELOPMENT OF A TRANSFORMATION SYSTEM FOR ASCOCHYTA RABIEI USING AGROBACTERIUM-MEDIATED TRANSFORMATION.
- (Abstract Only)
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GENETIC TRANSFORMATION OF SCLEROTINIA SCLEROTIORUM THROUGH AGROBACTERIUM TUMEFACIENS-MEDIATED TRANSFORMATION.
- (Abstract Only)
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CONSTITUTIVE EXPERSSION OF THE FLAVANONE 3-HYDROXYLASE GENE RELATED TO PATHOTYPE-SPECIFIC ASCOCHYTA BLIGHT RESISTANCE IN CICER ARIETINUM L.
- (Peer Reviewed Journal)
|
Cho, S., Chen, W., Muehlbauer, F.J. 2005. Constitutive experssion of the flavanone 3-hydroxylase gene related to pathotype-specific ascochyta blight resistance in cicer arietinum l.. Physiological and Molecular Plant Pathology 67:100-107.
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SCREENING TECHNIQUES AND SOURCES OF RESISTANCE TO FOLIAR DISEASES CAUSED BY MAJOR NECROTROPHIC FUNGI IN GRAIN LEGUMES.
- (Review Article)
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Tivoli, B., Baranger, A., Avila, C.M., Banniza, S., Barbetti, M., Chen, W., Davidson, J., Lindeck, K., Kharrat, M., Rubiales, D., Sadiki, M., Sillero, J.C., Sweetingham, M., Muehlbauer, F.J. 2006. Screening techniques and sources of resistance to foliar diseases caused by major necrotrophic fungi in grain legumes. Euphytica 147: 223-253.
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USE OF A MINI-DOME BIOASSAY AND GRAFTING TO STUDY RESISTANCE OF CHICKPEA TO ASCOCHYTA BLIGHT
- (Peer Reviewed Journal)
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Chen, W., Mcphee, K.E., Muehlbauer, F.J. 2005. Use of a mini-dome bioassay and grafting to study resistance of chickpea to ascochyta blight. Journal of Phytopathology 153:579-587.
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TWO PATHOTYPES OF THE CHICKPEA PATHOGEN ASCOCHYTA RABIEI IDENTIFIED IN THE UNITED STATES.
- (Abstract Only)
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SIMPLIFIED GERMINATION OF PERENNIAL CICER
- (Peer Reviewed Journal)
|
Coyne, C.J., Sharp-Vincent, T., Cashman, M.J., Watt, C., Chen, W., Muehlbauer, F.J., Mallikarjuna, N. 2005. Simplified germination of perennial cicer. International Chickpea NDA Pigeonpea Newsletter, V. 12, P. 16.
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FUNGI RESIDENT IN CHICKPEA DEBRIS AND THEIR SUPPRESSION OF GROWTH AND REPRODUCTION OF DIDYMELLA RABIEI UNDER LABORATORY CONDITIONS
- (Peer Reviewed Journal)
|
Dugan, F.M., Lupien, S.L., Hernandez-Bello, M., Peever, T.L., Chen, W. 2005. Fungi resident in chickpea debris and their suppression of growth and reproduction of didymella rabiei under laboratory conditions. Journal of Phytopathology.153:431-439.
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INSERTIONAL MUTAGENESIS OF SCLEROTINIA SCLEROTIORUM THROUGH AGROBACTERIUM TUMEFACIENS-MEDIATED TRANSFORMATION.
- (Abstract Only)
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GENETIC DIVERSITY OF SCLEROTINIA SCLEROTIORUM FROM A SINGLE LENTIL FIELD.
- (Abstract Only)
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CONDITIONS FOR EFFICIENT AGROBACTERIUM TUMEFACIENS-MEDIATED TRANSFORMATION OF ASCOCHYTA RABIEI.
- (Abstract Only)
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FIELD EVALUATION OF SEED TREATMENT FUNGICIDES FOR CONTROL OF ROOT ROT AND DAMPING-OFF ON CHICKPEA, 2004
- (Peer Reviewed Journal)
|
Chen, W., Paulitz, T.C., Mcphee, K.E., Muehlbauer, F.J. 2005. Field evaluation of seed treatment fungicides for control of root rot and damping-off on chickpea, 2004. Fungicide and Nematocide Tests. 60:ST006.
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|
USE OF MOLECULAR MARKERS TO STUDY HOST-PATHOGEN CO-EVOLUTION: A CASE STUDY OF THE FUNGAL PATHOGEN PHIALOPHORA GREGATA
- (Book / Chapter)
|
Chen, W., Grau, C.R. Use of molecular markers to study host-pathogen co-evolution: a case study of the fungal pathogen phialophora gregata. pp.365-383. In: A.K. Sharma and A. Sharma (eds.), Plant Genome: Biodiversity and Evolution. Science Publishers, Enfield, New Hampshire.
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CULTIVAR PREFERENCE EXHIBITED BY TWO SYMPATRIC AND GENETICALLY DISTINCT POPULATIONS OF THE SOYBEAN FUNGAL PATHOGEN PHIALOPHORA GREGATA F.SP.SOJAE
- (Peer Reviewed Journal)
|
Meng, X.Q., Grau, C., Chen, W. 2005. Cultivar preference exhibited by two sympatric and genetically distinct populations of the soybean fungal pathogen phialophora gregata f.sp.sojae. Plant Pathology. 54:180-188.
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|
GENETICS OF CHICKPEA RESISTANCE TO FIVE RACES OF FUSARIUM WILT AND A CONCISE SET OF RACE DIFFERENTIALS FOR FUSARIUM OXYSPORUM F. SP. CICERIS
- (Peer Reviewed Journal)
|
Sharma, K.D., Chen, W., Muehlbauer, F.J. 2005. Genetics of chickpea resistance to five races of fusarium wilt and a concise set of race differentials for fusarium oxysporum f. sp. ciceris. Plant Disease. 89(4):385-390.
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THE ROLE OF MELANIN PRODUCTION IN ASCOCHYTA BLIGHT OF CHICKPEA.
- (Abstract Only)
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Chen, W., Sharma, K.D., Wheeler, M.H., Muehlbauer, F.J. 2004. The role of melanin production in ascochyta blight of chickpea.. Phytopathology. 94:S132.
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CHARACTERIZATION OF CHICKPEA DIFFERENTIALS FOR VIRULENCE ASSAY OF ASCOCHYTA BLIGHT AND IDENTIFICATION OF CHICKPEA ACCESSIONS RESISTANT TO ASCOCHYTA RABIEI
- (Peer Reviewed Journal)
|
Chen, W., Coyne, C.J., Peever, T., Muehlbauer, F.J. 2004. Characterization of chickpea differentials for virulence assay of ascochyta blight and identification of chickpea accessions resistant to ascochyta rabiei. Plant Pathology. 53:759-769.
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VERTICILLIUM LONGISPORUM AND FUSARIUM SOLANI: TWO NEW SPECIES IN THE COMPLEX OF INTERNAL DISCOLORATION OF HORSERADISH ROOT
- (Peer Reviewed Journal)
|
Babadoost, M., Chen, W., Bratsch, T., Eastman, C.E. 2004. Verticillium longisporum and fusarium solani: two new species in the complex of internal discoloration of horseradish root. Plant Pathology. 53:669-676.
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REGISTRATION OF 'SIERRA' CHICKPEA
- (Peer Reviewed Journal)
|
Muehlbauer, F.J., Chen, W. 2004. Registration of 'Sierra' chickpea. Crop Science. 44:1864.
|
|
PATHOTYPE-SPECIFIC GENETIC FACTORS IN CHICKPEA (CICER ARIETINUM L.) FOR QUANTITATIVE RESISTANCE TO ASCOCHYTA BLIGHT
- (Peer Reviewed Journal)
|
Cho, S., Chen, W., Muehlbauer, F.J. 2004. Pathotype-specific genetic factors in chickpea (Cicer arietinum l.) for quantitative resistance to ascochyta blight. Journal of Theoretical and Applied Genetics. 109(4):733-739.
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A CONSENSUS SET OF DIFFERENTIAL LINES FOR IDENTIFYING RACES OF FUSARIUM OXYSPORUM F. SP. CICERIS
- (Peer Reviewed Journal)
|
Sharma, K., Chen, W., Muehlbauer, F.J. 2004. A consensus set of differential lines for identifying races of fusarium oxysporum f. sp. ciceris. International Chickpea NDA Pigeonpea Newsletter. 11:34-36.
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USE OF GRAFTING TOP STUDY CHICKPEA RESISTANCE TO ASCOCHYTA BLIGHT
- (Peer Reviewed Journal)
|
Chen, W., Mcphee, K.E., Muehlbauer, F.J. 2004. Use of grafting top study chickpea resistance to ascochyta blight. International Chickpea and Pigeonpea Newsletter. 11:39-41.
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FIELD EVALUATION OF FUNGICIDES IN CONTROLLING ASCOCHYTA BLIGHT OF CHICKPEA, 2003
- (Peer Reviewed Journal)
|
Chen, W., Mcphee, K.E., Muehlbauer, F.J. 2004. Field evaluation of fungicides in controlling ascochyta blight of chickpea, 2003. Fungicide and Nematocide Tests. 59:FC071. Available: http://www.apsnet.org/online/FNtests/vol59/top.htm
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|
FIELD EVALUATION OF SEED TREATMENT FUNGICIDES FOR CONTROL OF ROOT ROT AND DAMPING-OFF ON CHICKPEA, 2003
- (Peer Reviewed Journal)
|
Chen, W., Paulitz, T.C., Mcphee, K.E., Muehlbauer, F.J. 2004. Field evaluation of seed treatment fungicides for control of root rot and damping-off on chickpea, 2003. Fungicide and Nematocide Tests. 59:ST017. Available: http://www.apsnet.org/online/FNtests/vol59/top.htm.
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FIRST REPORT OF PYTHIUM IRREGULARE ON LENTILS IN THE UNITED STATES.
- (Peer Reviewed Journal)
|
Paulitz, T.C., Dugan, F.M., Chen, W., Grunwald, N.J. 2004. First report of pythium irregulare on lentils in the united states. Plant Disease. 88 (3). p. 310-310. 2004
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FIELD EVALUATION OF CHEMICALS IN CONTROLLING CHICKPEA ASCOCHYTA BLIGHT, 2002
- (Peer Reviewed Journal)
|
CHEN,W. ., SHORT,R.W., MCPHEE,K.E., MUEHLBAUER,F.J. FIELD EVALUATION OF CHEMICALS IN CONTROLLING CHICKPEA ASCOCHYTA BLIGHT, 2002. FUNGICIDE AND NEMATOCIDE TESTS. Vol 58. FC033. DOI:10.1094/FN58. 2003.
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CULTIVAR PREFERENCE AND GENOTYPE DISTRIBUTION OF THE BROWN STEM ROT PATHOGEN PHIALOPHORA GREGATA IN THE MIDWESTERN USA
- (Peer Reviewed Journal)
|
MALVICK, D.K., CHEN, W., KURLE, J., GRAU, C. CULTIVAR PREFERENCE AND GENOTYPE DISTRIBUTION OF THE BROWN STEM ROT PATHOGEN PHIALOPHORA GREGATA IN THE MIDWESTERN USA. PLANT DISEASE. 2003. v. 87. p. 1250-1255.
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EVALUATION OF SOYBEAN PLANT INTRODUCTIONS FROM CHINA FOR RESISTANCE TO BROWN STEM ROT
- (Peer Reviewed Journal)
|
PATZOLDT, M.E., CHEN, W., DIERS, B.W. EVALUATION OF SOYBEAN PLANT INTRODUCTIONS FROM CHINA FOR RESISTANCE TO BROWN STEM ROT. PLANT HEALTH PROGRESS. doi:10.1094/PHP-2003-0702-01-RS. 2003.
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AN IMPROVED TECHNIQUE FOR VIRULENCE ASSAY OF ASCOCHYTA RABIEI ON CHICKPEA
- (Peer Reviewed Journal)
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CHEN, W., MUEHLBAUER, F.J. AN IMPROVED TECHNIQUE FOR VIRULENCE ASSAY OF ASCOCHYTA RABIEI ON CHICKPEA. INTERNATIONAL CHICKPEA NDA PIGEONPEA NEWSLETTER. 2003. v. 10. p. 31-33
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CHARACTERIZATION OF CHICKPEA DIFFERENTIALS FOR ASCOCHYTA RABIEI USING AN IMPROVED VIRULENCE ASSAY
- (Abstract Only)
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CHEN, W., COYNE, C.J., PEEVER, T., MUEHLBAUER, F.J. CHARACTERIZATION OF CHICKPEA DIFFERENTIALS FOR ASCOCHYTA RABIEI USING AN IMPROVED VIRULENCE ASSAY. PHYTOPATHOLOGY 93(Supplement):S16
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SAMPLING AND AFLP FINGERPRINTING OF WHITE MOLD ISOLATES FROM PEA AND LENTIL IN THE PACIFIC NORTHWEST
- (Proceedings)
|
GRUNWALD, N.J., CHEN, W., KOHN, L.M. SAMPLING AND AFLP FINGERPRINTING OF WHITE MOLD ISOLATES FROM PEA AND LENTIL IN THE PACIFIC NORTHWEST. Proceedings of the International Sclerotinia Workshop. 2003. p. 28.
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EVALUATION OF LENTIL CULTIVARS FOR RESISTANCE TO WHITE MOLD
- (Proceedings)
|
CHEN, W., GRUNWALD, N.J., MCPHEE, K.E., MUEHLBAUER, F.J. EVALUATION OF LENTIL CULTIVARS FOR RESISTANCE TO WHITE MOLD. PROCEEDINGS OF THE INTERNATIONAL SCLEROTINIA WORKSHOP. 2003. p. 17.
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FIELD EVALUATION OF LENTIL CULTIVARS FOR RESISTANCE TO SCLEROTINIA SCLEROTIORUM
- (Peer Reviewed Journal)
|
CHEN,W. ., GRUNWALD,N.J., MCPHEE,K.E., MUEHLBAUER,F.J. FIELD EVALUATION OF LENTIL CULTIVARS FOR RESISTANCE TO SCLEROTINIA SCLEROTIORUM. BIOLOGICAL AND CULTURAL TESTS FOR CONTROL OF PLANT DISEASES. Vol. 18. F010. DOI:10.1094/BC18. 2003.
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A MINI-DOME TECHNIQUE FOR VIRULENCE ASSAY OF ASCOCHYTA RABIEI ON CHICKPEA
- (Proceedings)
|
CHEN, W., MUEHLBAUER, F.J. A MINI-DOME TECHNIQUE FOR VIRULENCE ASSAY OF ASCOCHYTA RABIEI ON CHICKPEA. PROCEEDINGS FOR THE 4th CANADIAN PULSE RESEARCH WORKSHOP. 2002. pp. 167-171
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ARS News Articles
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