Jason Walling
Cereal Crops Research
Research Geneticist (Plants)
Phone: (608) 262-3672
Fax:
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Publications
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Registration of ‘Avalon’ winter malt barley
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Malt quality profile of barley predicted by near-infrared spectroscopy using partial least square, Bayesian regression, and artificial neural network models
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Ajayi, O.O., Akinyemi, L., Atanda, S.A., Walling, J.G., Mahalingam, R. 2023. Malt quality profile of barley predicted by near-infrared spectroscopy using partial least square, Bayesian regression, and artificial neural network models. Journal of Chemometrics. e3519: 1-15. http://doi.org/10.1002/cem.3519.
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QTL mapping of shoot and seed traits impacted by drought in barley using a recombinant inbred line population
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Ajayi, O.O., Bregitzer, P.P., Esvelt Klos, K.L., Hu, G., Walling, J.G., Mahalingam, R. 2023. QTL mapping of shoot and seed traits impacted by drought in barley using a recombinant inbred line population. BMC Plant Biology. 23. Article 283. https://doi.org/10.1186/s12870-023-04292-x.
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Malting quality and preharvest sprouting traits are genetically correlated in spring malting barley
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Rooney, T.E., Sweeney, D.W., Kunze, K.H., Sorrells, M.E., Walling, J.G. 2023. Malting quality and preharvest sprouting traits are genetically correlated in spring malting barley. Theoretical and Applied Genetics. 136. Article 59. https://doi.org/10.1007/s00122-023-04257-6.
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Identification of genomic loci controlling grain macro and micronutrients variation in a Wild Barley (H. vulgare spp spontaneum) Diversity Panel
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Abendroth, J.A., Sallam, A.H., Steffenson, B.J., Vinje, M.A., Mahalingam, R., Walling, J.G. 2022. Identification of genomic loci controlling grain macro and micronutrients variation in a Wild Barley (H. vulgare spp spontaneum) Diversity Panel. Agronomy Journal. 12(11). Article 2839. https://doi.org/10.3390/agronomy12112839.
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Managing with less: nitrogen and irrigation termination timing in malt barley
- (Trade Journal)
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Rogers, C.W., Dari, B., Walling, J.G. 2022. Managing with less: nitrogen and irrigation termination timing in malt barley. Crops and Soils. 5: 26-29. https://doi.org/10.1002/crso.20228.
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Temporal expression analysis of barley disproportionating enzyme 1 (DPE1) and its putative role in substrate production during malting and mashing
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Vinje, M.A., Walling, J.G., Henson, C.A., Duke, S.H. 2022. Temporal expression analysis of barley disproportionating enzyme 1 (DPE1) and its putative role in substrate production during malting and mashing. Journal of the American Society of Brewing Chemists. https://doi.org/10.1080/03610470.2022.2104060.
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Quantitative trait loci impacting grain beta-glucan content in wild barley (Hordeum vulgare ssp. spontaneum) reveal genes associated with cell wall modification and carbohydrate metabolism
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Walling, J.G., Sallam, A.H., Steffenson, B.J., Henson, C.A., Vinje, M.A., Mahalingam, R. 2022. Quantitative trait loci impacting grain beta-glucan content in wild barley (Hordeum vulgare ssp. spontaneum) reveal genes associated with cell wall modification and carbohydrate metabolism. Crop Science. 62(3):1213-1227. https://doi.org/10.1002/csc2.20734.
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Barley yield and malt-characteristics as affected by nitrogen and final irrigation timing
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Rogers, C.W., Dari, B., Neibling, H., Walling, J.G. 2022. Barley yield and malt-characteristics as affected by nitrogen and final irrigation timing. Agronomy Journal. 114(2):1461-1474. https://doi.org/10.1002/agj2.21036.
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Interactions of the barley SD1 and SD2 seed dormancy loci influence preharvest sprouting, seed dormancy, and malting quality
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Sweeney, D.W., Rooney, T.E., Walling, J.G., Sorrells, M.E. 2021. Interactions of the barley SD1 and SD2 seed dormancy loci influence preharvest sprouting, seed dormancy, and malting quality. Crop Science. 60: 120-138. https://doi.org/10.1002/csc2.20641.
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The barley (Hordeum vulgare ssp. vulgare) Respiratory Burst Oxidase Homolog (HvRBOH) gene family and their plausible role on malting quality
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Mahalingam, R., Graham, D.L., Walling, J.G. 2021. The barley (Hordeum vulgare ssp. vulgare) Respiratory Burst Oxidase Homolog (HvRBOH) gene family and their plausible role on malting quality. Frontiers in Plant Science. 12. Article 608541. https://doi.org/10.3389/fpls.2021.608541.
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Genome-wide association analysis of natural variation in seed tocochromanols of barley
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Mahalingam, R., Sallam, A.H., Steffenson, B.J., Fiedler, J.D., Walling, J.G. 2020. Genome-wide association analysis of natural variation in seed tocochromanols of barley. The Plant Genome. e20039. https://doi.org/10.1002/tpg2.20039.
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Mutations in the HvMKK3 and HvAlaAT1 genes affect barley preharvest sprouting and after-ripened seed dormancy
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Vetch, J., Walling, J.G., Sherman, J., Martin, J., Giroux, M. 2020. Mutations in the HvMKK3 and HvAlaAT1 genes affect barley preharvest sprouting and after-ripened seed dormancy. Crop Science. 1-10. https://doi.org/10.1002/csc2.20178.
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Genomic survey of RNA recognition motif (RRM) containing RNA binding proteins from barley (Hordeum vulgare ssp. vulgare)
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Mahalingam, R., Walling, J.G. 2019. Genomic survey of RNA recognition motif (RRM) containing RNA binding proteins from barley (Hordeum vulgare ssp. vulgare). Genomics. 112(2):1829-1839. https://doi.org/10.1016/j.ygeno.2019.10.016.
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Mutations in HvMKK3 and HvAlaAT1 genes affect barley pre-harvest sprouting and after-ripened seed dormancy
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The effect of steeping regime on barley malt quality and its impacts on breeding program selection
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Turner, H.M., Elmore, L., Walling, J.G., Lachowiec, J., Mangel, D., Fischer, A., Sherman, J. 2019. The effect of steeping regime on barley malt quality and its impacts on breeding program selection. Journal of American Society of Brewing Chemists. https://doi.org/10.1080/03610470.2019.1629794.
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An MKK3 allele affects seed dormancy at physiological maturity in common barley varieties (Hordeum vulgare)
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Comparative gene expression analysis of the beta-amylase and hordein gene families in the developing barley grain
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Vinje, M.A., Walling, J.G., Henson, C.A., Duke, S.H. 2019. Comparative gene expression analysis of the beta-amylase and hordein gene families in the developing barley grain. Gene. 693:127-136.
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Genotypic and phenotypic evaulation of preharvest sprouting in two and six row barley varieties
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Transcriptomics analysis of host liver and meta-transcriptome analysis of rumen epimural microbial community in young calves treated with artificial dosing of rumen content from adult donor cow
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Li, W., Edwards, A., Riehle, C., Cox, M., Raabis, S., Steinberger, A., Skarlupka, J., Walling, J.G., Bickhart, D.M., Suen, G. 2019. Transcriptomics analysis of host liver and meta-transcriptome analysis of rumen epimural microbial community in young calves treated with artificial dosing of rumen content from adult donor cow. Scientific Reports. 9. Article 790. https://doi.org/10.1038/s41598-018-37033-4.
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Comparisons of modern United States and Canadian malting barley cultivars with those from pre-Prohibition: V. Bmy1 intron III alleles and grain beta-amylase activity and thermostability
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Duke, S.H., Henson, C.A., Vinje, M.A., Walling, J.G., Bockelman, H.E. 2019. Comparisons of modern United States and Canadian malting barley cultivars with those from pre-Prohibition: V. Bmy1 intron III alleles and grain beta-amylase activity and thermostability. Journal of American Society of Brewing Chemists. 77(1):62-68. https://doi.org/10.1080/03610470.2018.1546110.
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Comparison of Oryza sativa and Oryza brachyantha genomes reveals selection-driven gene escape from the centromeric regions
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Liao, Y., Zhang, X., Li, B., Liu, T., Chen, J., Bai, Z., Wang, M., Shi, J., Walling, J.G., Wing, R., Jiang, J., Chen, M. 2018. Comparison of Oryza sativa and Oryza brachyantha genomes reveals selection-driven gene escape from the centromeric regions. The Plant Cell. https://doi.org/10.1105/tpc.18.00163.
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Evaluation and selection of internal reference genes from two- and six-row U.S. malting barley varieties throughout micromalting for use in RT-qPCR
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Walling, J.G., Zalapa, L.A., Vinje, M.A. 2018. Evaluation and selection of internal reference genes from two- and six-row U.S. malting barley varieties throughout micromalting for use in RT-qPCR. PLoS One. 13(5)/e0196966. https://doi.org/10.1371/journal.pone.0196966.
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