Hard Winter Wheat Genetics Research Unit Site Logo
Agricultural Research Service United States Department of Agriculture
 
Jesse A Poland
Hard Winter Wheat Genetics Research Unit
RESEARCH GENETICIST (PLANTS)

Phone: (785) 532-2709
USDA, ARS, NPA, CGAHR, HWWGRU
4011 THROCKMORTON HALL, PLANT SCIENCE BUILDING
MANHATTAN, KS, 66506

Projects
GENETIC ENHANCEMENT FOR RESISTANCE TO BIOTIC AND ABIOTIC STRESSES IN HARD WINTER WHEAT
Appropriated (D)
  Accession Number: 413167
DEVELOPMENT OF ABIOTIC STRESS RESISTANT WHEAT GERMPLASM
Specific Cooperative Agreement (S)
  Accession Number: 422132

Publications (Clicking on the reprint icon Reprint Icon will take you to the publication reprint.)
Introgression of stem rust resistance genes SrTA10187 and SrTA10171 from Aegilops tauschii to wheat - (Peer Reviewed Journal) - (09-Jan-13)
Multivariate mixed linear model analysis of longitudinal data: an information-rich statistical technique for analyzing disease resistance data Reprint Icon - (Peer Reviewed Journal)
Veturi, Y., Kump, K., Walsh, E., Ott, O., Poland, J.A., Kolkman, J., Nelson, R., Balint Kurti, P.J., Holland, J.B., Wisser, R. 2012. Multivariate mixed linear model analysis of longitudinal data: an information-rich statistical technique for analyzing disease resistance data. Phytopathology. VOL. 102, No. 11, 2012 1017:1025.
Genotyping-by-sequencing for plant breeding and genetics - (Review Article)
Poland, J.A., Rife, T. 2012. Genotyping-by-sequencing for plant breeding and genetics. The Plant Genome. VOL. 5, NO. 3 92:102.
Genomic selection in wheat using genotyping-by-sequencing - (Peer Reviewed Journal)
Poland, J.A., Endelman, J.B., Dawson, J., Rutkoski, J., Wu, S., Manes, Y., Dreisigacker, S., Crossa, J., Sanchez, H., Sorrells, M., Jannink, J. 2012. Genomic selection in wheat using genotyping-by-sequencing. The Plant Genome. VOL. 5, NO. 3 103:113.
A physical, genetic and functional sequence assembly of the barley genome - (Peer Reviewed Journal)
Mayer, K., Waugh, R., Langridge, P., Close, T.J., Wise, R.P., Graner, A., Matsumoto, T., Sato, K., Schulman, A., Muehlbaueer, G.J., Stein, N., Ariyadasa, R., Schulte, D., Poursarebani, N., Zhou, R., Steuernagel, B., Mascher, M., Scholz, U., Shi, B., Madishetty, K., Svensson, J.T., Bhat, P., Moscou, M., Resnik, J., Hedley, P., Liu, H., Morris, J., Frenkel, Z., Korol, A., Berges, H., Taudien, S., Felder, M., Groth, M., Platzer, M., Himmelbach, A., Lonardi, S., Duma, D., Alpert, M., Cordero, F., Beccuti, M., Ciardo, G., Ma, Y., Wanamaker, S., Cattonaro, F., Vendramin, V., Scalabrin, S., Radovic, S., Wing, R., Morgante, M., Nussbaumer, T., Gundlach, H., Martis, M., Poland, J.A., Spannagl, M., Pfeifer, M., Moisy, C., Tanskanen, J., Zuccolo, A., Russell, J., Druka, A., Marshall, D., Bayer, M., Sampath, D., Febrer, M., Caccamo, M., Tanaka, T., Platzer, M., Fincher, G., Schmutzer, T. 2012. A physical, genetic and functional sequence assembly of the barley genome. Nature. 491:711-716.
Maize HapMap2 identifies extant variation from a genome in flux - (Peer Reviewed Journal)
Chia, J., Song, C., Bradbury, P., Costich, D., De Leon, N., Doebley, J., Elshire, R., Gaut, B., Geller, L., Glaubitz, J., Gore, M.A., Guill, K., Holland, J., Hufford, M., Lai, J., Li, M., Liu, X., Lu, Y., McCombie, R., Nelson, R., Poland, J.A., Prasanna, B., Phyajarvi, T., Rong, T., Sekhon, R., Sun, Q., Tenaillon, M., Tian, F., Wang, J., Xu, X., Zhang, Z., Kaeppler, S.M., Ross-Ibarra, J., McMullen, M.D., Buckler IV, E.S., Zhang, G., Xu, Y., Ware, D. 2012. Maize HapMap2 identifies extant variation from a genome in flux. Nature Genetics. 40:803-807. DOI: 10.1038/ng.2313.
Development of high-density genetic maps for barley and wheat using a novel two enzyme genotyping-by-sequencing approach - (Peer Reviewed Journal)
Poland, J.A., Brown, P.J., Sorrells, M.E., Jannink, J. 2012. Development of high-density genetic maps for barley and wheat using a novel two enzyme genotyping-by-sequencing approach. PLoS One. 7(2): e32253.
A robust, simple genotyping-by-sequencing (GBS) approach for high diversity species Reprint Icon - (Peer Reviewed Journal)
Elshire, R.J., Glaubitz, J.C., Sun, Q., Poland, J.A., Kawamoto, K., Buckler IV, E.S., Mitchell, S.E. 2011. A robust, simple genotyping-by-sequencing (GBS) approach for high diversity species. PLoS One. 123:307-326.
Targeted discovery of quantitative trait loci for resistance to northern leaf blight and other diseases of maize - (Peer Reviewed Journal)
Chung, C., Poland, J.A., Kump, K., Benson, J., Longfellow, J.M., Walsh, E.K., Balint Kurti, P.J., Nelson, R.J. 2011. Targeted discovery of quantitative trait loci for resistance to northern leaf blight and other diseases of maize. Theoretical and Applied Genetics. 123:307-326.
Genome-wide nested association mapping of quantitative resistance to northern leaf blight in maize Reprint Icon - (Peer Reviewed Journal)
Poland, J.A., Bradbury, P., Buckler IV, E.S., Nelson, R. 2011. Genome-wide nested association mapping of quantitative resistance to northern leaf blight in maize. Proceedings of the National Academy of Sciences. 108:6893-6898.
In the eye of the beholder: The effect of rater variability and different rating scales on QTL mapping Reprint Icon - (Peer Reviewed Journal)
Poland, J.A., Nelson, R. 2011. In the eye of the beholder: The effect of rater variability and different rating scales on QTL mapping. Phytopathology. 101:290-298.

     
Last Modified: 05/23/2013