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PreviewIssue DateTitleAuthor(s)
2016Genetic basis for variation in wheat grain yield in response to varying nitrogen applicationMahjourimajd, S.; Taylor, J.; Sznajder, B.; Timmins, A.; Shahinnia, F.; Rengel, Z.; Khabaz-Saberi, H.; Kuchel, H.; Okamoto, M.; Langridge, P.; Nguyen, H.
2017Increased genomic prediction accuracy in wheat breeding using a large Australian panelTaylor, J.D.; Norman, A.; Tanaka, E.; Telfer, P.; Edwards, J.; Martinant, J.P.; Kuchel, H.
2017Quantifying wheat sensitivities to environmental constraints to dissect genotype x environment interactions in the fieldParent, B.; Bonneau, J.; Maphosa, L.; Kovalchuk, O.; Langridge, P.; Fleury, D.L.
2008Quantitative trait loci for grain fructan concentration in wheat (Triticum aestivum L.)Huynh, B.; Wallwork, H.; Stangoulis, J.; Graham, R.; Willsmore, K.; Olson, S.; Mather, D.
2013Multi-environment analysis and improved mapping of a yield-related QTL on chromosome 3B of wheatBonneau, J.; Taylor, J.; Parent, B.; Bennett, D.; Reynolds, M.; Feuillet, C.; Langridge, P.; Mather, D.
2015Transcriptomic analysis of wheat near-isogenic lines identifies PM19-A1 and A2 as candidates for a major dormancy QTLBarrero, J.; Cavanagh, C.; Verbyla, K.; Tibbits, J.; Verbyla, A.; Huang, B.; Rosewarne, G.; Stephen, S.; Wang, P.; Whan, A.; Rigault, P.; Hayden, M.; Gubler, F.
2005A QTL located on chromosome 4A associated with dormancy in white- and red-grained wheats of diverse originMares, D.; Mrva, K.; Cheong, J.; Williams, K.; Watson, B.; Storlie, E.; Sutherland, M.; Zou, Y.
2014Genetic control of grain yield and grain physical characteristics in a bread wheat population grown under a range of environmental conditionsMaphosa, L.; Langridge, P.; Taylor, H.; Parent, B.; Emebiri, L.; Kuchel, H.; Reynolds, M.; Chalmers, K.; Okada, A.; Edwards, J.; Mather, D.
2015Genome wide association mapping for arabinoxylan content in a collection of tetraploid wheatsMarcotuli, I.; Houston, K.; Waugh, R.; Fincher, G.; Burton, R.; Blanco, A.; Gadaleta, A.; Hernandez, P.