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Jennifer Bragg
Crop Improvement and Genetics Research
Biological Science Lab Technician

Phone: (510) 559-6117
Fax: (510) 559-5818

(Employee information on this page comes from the REE Directory. Please contact your front office staff to update the REE Directory.)


Publications (Clicking on the reprint icon Reprint Icon will take you to the publication reprint.)
Haploidy and aneuploidy in switchgrass mediated by misexpression of CENH3 Reprint Icon - (Peer Reviewed Journal)
Yoon, S., Bragg, J.N., Aucar-Yamato, S., Chanbusarakum, L.J., Dluge, K., Cheng, P., Blumwald, E., Gu, Y.Q., Tobias, C.M. 2022. Haploidy and aneuploidy in switchgrass mediated by misexpression of CENH3. The Plant Genome. Article e20209. https://doi.org/10.1002/tpg2.20209.
Environmentally responsive QTL controlling surface wax load in switchgrass Reprint Icon - (Peer Reviewed Journal)
Bragg, J.N., Tomasi, P., Zhang, L., Williams, T.G., Wood, D.F., Lovell, J.T., Healy, A., Schmutz, J., Bonnette, J.E., Cheng, P.K., Chanbusarakum, L.J., Juenger, T., Tobias, C.M. 2020. Environmentally responsive QTL controlling surface wax load in switchgrass. Theoretical and Applied Genetics. 1-9. https://doi.org/10.1007/s00122-020-03659-0.
Gene expression and physiological differences in neo-octoploid switchgrass subjected to drought stress Reprint Icon - (Peer Reviewed Journal)
Chanbusarakum, L.J., Bragg, J.N., Cheng, P.K., Aucar, S., Sarath, G., Palmer, N.A., Edme, S.J., Tobias, C.M. 2020. Gene expression and physiological differences in neo-octoploid switchgrass subjected to drought stress. BioEnergy Research. 13:63-78. https://doi.org/10.1007/s12155-020-10092-0.
Sequencing and functional validation of the JGI Brachypodium distachyon T-DNA collection - (Peer Reviewed Journal)
Hsia, M., O'Malley, R., Cartwright, A., Nieu, R., Gordon, S., Kelly, S., Williams, T.G., Wood, D.F., Zhao, Y., Bragg, J.N., Jordan, M., Pauly, M., Ecker, J., Gu, Y.Q., Vogel, J.P. 2017. Sequencing and functional validation of the JGI Brachypodium distachyon T-DNA collection. Plant Journal. doi: 10.1111/tpj.13582.
A division in PIN-medicated patterning during lateral organ initiation in grasses - (Peer Reviewed Journal)
O'Connor, D.L., Runions, A., Sluis, A., Bragg, J.N., Vogel, J.P., Prusinkiewicz, P., Hake, S.C. 2014. A division in PIN-medicated patterning during lateral organ initiation in grasses. PLoS Computational Biology. 10(1):e1003447.
Phylogenetic, molecular, and biochemical characterization of caffeic aicd O-methyltransferase (COMT) gene family in Brachypodium distachyon - (Peer Reviewed Journal)
Wu, X., Ju, J., Bragg, J.N., Vogel, J.P., Anderson, O.D., Gu, Y.Q. 2013. Phylogenetic, molecular, and biochemical characterization of caffeic aicd O-methyltransferase (COMT) gene family in Brachypodium distachyon. International Journal of Plant Genomics. doi.org/10.1155/2013/423189.
Annotation and comparative analysis of the glycoside hydrolase genes in Brachypodium distachyon - (Peer Reviewed Journal)
Tyler, L., Bragg, J.N., Wu, J., Yng, X., Tuskan, G., Vogel, J.P. 2010. Annotation and comparative analysis of the glycoside hydrolase genes in Brachypodium distachyon. Biomed Central (BMC) Genomics. 11:600.
Genome Sequencing and Analysis of the Model Grass Brachypodium Distachyon. - (Peer Reviewed Journal)
Vogel, J.P., Garvin, D.F., Gu, Y.Q., Lazo, G.R., Anderson, O.D., Bragg, J.N., Chingcuanco, D.L., Weng, Y., Belknap, W.R., Thomson, J.G., Dardick, C.D., Baxter, I.R. 2010. Genome sequencing and analysis of the model grass Brachypodium distachyon. Nature. 463:763-768.
Subcellular localization of the barley stripe mosaic virsus triple gene block proteins - (Peer Reviewed Journal)
Lim, H.S., Bragg, J.N., Ganesan, U., Ruzin, S.E., Schichnes, D., Lee, M., Vaira, A., Ryu, K., Hammond, J., Jackson, A.O. 2009. Subcellular localization of the barley stripe mosaic virsus triple gene block proteins. Journal of Virology 83(18):9432-9448. http://dx.doi.org/10.1128/JVI.00739-09.
Brachypodium distachyon, a New Model for the Grasses - (Book / Chapter)
Vogel, J.P., Bragg, J.N. 2009. Brachypodium distachyon, a New Model for the Grasses. p. 427-449. Genetics and Genomics of the Triticeae.