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PreviewIssue DateTitleAuthor(s)
2020QTL analysis and fine mapping of a QTL for yield-related traits in wheat grown in dry and hot environmentsTura, H.; Edwards, J.; Gahlaut, V.; Garcia, M.; Sznajder, B.; Baumann, U.; Shahinnia, F.; Reynolds, M.; Langridge, P.; Balyan, H.S.; Gupta, P.K.; Schnurbusch, T.; Fleury, D.
2021Development of an Australian bread wheat nested association mapping population, a new genetic diversity resource for breeding under dry and hot climatesChidzanga, C.; Fleury, D.; Baumann, U.; Mullan, D.; Watanabe, S.; Kalambettu, P.; Pontre, R.; Edwards, J.; Forrest, K.; Wong, D.; Langridge, P.; Chalmers, K.; de Oliveira Santos Garcia, M.
2012Plant genome sequencing: models for developing synteny maps and association mappingFleury, D.; Baumann, U.; Langridge, P.; Altman, A.; Hasegawa, P.M.
2012Clusters of genes encoding fructan biosynthesizing enzymes in wheat and barleyHuynh, B.; Mather, D.; Schreiber, A.; Toubia, J.; Baumann, U.; Shoaei, Z.; Stein, N.; Ariyadasa, R.; Stangoulis, J.; Edwards, J.; Shirley, N.; Langridge, P.; Fleury, D.
2012Bread matters: a national initiative to profile the genetic diversity of Australian wheatEdwards, D.; Wilcox, S.; Barrero, R.; Fleury, D.; Cavanagh, C.; Forrest, K.; Hayden, M.; Moolhuijzen, P.; Keeble-Gagnere, G.; Bellgard, M.; Lorenc, M.; Shang, C.; Baumann, U.; Taylor, J.; Morell, M.; Langridge, P.; Appels, R.; Fitzgerald, A.
2021The wheat Seven in absentia gene is associated with increases in biomass and yield in hot climatesThomelin, P.; Bonneau, J.; Brien, C.; Suchecki, R.; Baumann, U.; Kalambettu, P.; Langridge, P.; Tricker, P.; Fleury, D.; Uauy, C.