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Results 1-10 of 17 (Search time: 0.003 seconds).
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PreviewIssue DateTitleAuthor(s)
2010Molecular marker survey and expression analyses of the rice submergence-tolerance gene SUB1ASingh, N.; Dang, T.; Vergara, G.; Pandey, D.; Sanchez, D.; Neeraja, C.; Septiningsih, E.; Mendioro, M.; Tecson-Mendoza, E.; Ismail, A.; MacKill, D.; Heuer, S.
2010Development and application of gene-based markers for the major rice QTL Phosphorus uptake 1Chin, J.; Lu, X.; Haefele, S.; Gamuyao, R.; Ismail, A.; Wissuwa, M.; Heuer, S.
2009Physical analysis of the complex rye (Secale cereale L.) Alt4 aluminium (aluminum) tolerance locus using a whole-genome BAC library of rye cv. BlancoShi, B.; Gustafson, J.; Button, J.; Miyazaki, J.; Pallotta, M.; Gustafson, N.; Zhou, H.; Langridge, P.; Collins, N.
2006The genetic control of milling yield, dough rheology and baking quality of wheatKuchel, H.; Langridge, P.; Mosionek, L.; Williams, K.; Jefferies, S.
2009Development of wheat lines carrying stem rust resistance gene Sr39 with reduced Aegilops speltoides chromatin and simple PCR markers for marker-assisted selectionMago, R.; Zhang, P.; Bariana, H.; Verlin, D.; Bansal, U.; Ellis, J.; Dundas, I.
2012Multivariate whole genome average interval mapping: QTL analysis for multiple traits and/or environmentsVerbyla, A.; Cullis, B.
2013Fine mapping of the Rrs1 resistance locus against scald in two large populations derived from Spanish barley landracesHofmann, K.; Silvar, C.; Casas, A.; Herz, M.; Buttner, B.; Gracia, M.; Contreras-Moreira, B.; Wallwork, H.; Igartua, E.; Schweizer, G.
2013Development of wheat-Aegilops speltoides recombinants and simple PCR-based markers for Sr32 and a new stem rust resistance gene on the 2S#1 chromosomeMago, R.; Verlin, D.; Zhang, P.; Bansal, U.; Bariana, H.; Jin, Y.; Ellis, J.; Hoxha, S.; Dundas, I.
2011Developing rice with high yield under phosphorus deficiency: Pup1 sequence to applicationChin, J.; Gamuyao, R.; Dalid, C.; Bustamam, M.; Prasetiyono, J.; Moeljopawiro, S.; Wissuwa, M.; Heuer, S.
2015A genome-wide association study for culm cellulose content in barley reveals candidate genes co-expressed with members of the Cellulose synthase A gene familyHouston, K.; Burton, R.; Sznajder, B.; Rafalski, A.; Dhugga, K.; Mather, D.; Taylor, J.; Steffenson, B.; Waugh, R.; Fincher, G.; Zabotina, O.