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Results 31-40 of 49 (Search time: 0.002 seconds).
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PreviewIssue DateTitleAuthor(s)
2013Genetic, hormonal, and physiological analysis of late maturity α-amylase in wheatBarrero, J.; Mrva, K.; Talbot, M.; White, R.; Taylor, J.; Gubler, F.; Mares, D.
2013Transposon-mediated alteration of TaMATE1B expression in wheat confers constitutive citrate efflux from root apicesTovkach, A.; Ryan, P.; Richardson, A.; Lewis, D.; Rathjen, T.; Ramesh, S.; Tyerman, S.; Delhaize, E.
2011Investigation of a His-rich arabinogalactan-protein for micronutrient biofortification of cereal grainWan Kamaruddin, W.; Preuss, J.; Johnson, A.; Tester, M.; Schultz, C.
2012Wheat grain yield on saline soils is improved by an ancestral Na+ transporter geneMunns, R.; James, R.; Xu, B.; Athman, A.; Conn, S.; Jordans, C.; Byrt, C.; Hare, R.; Tyerman, S.; Tester, M.; Plett, D.; Gilliham, M.
2012RWGAIM: An efficient high-dimensional random whole genome average (QTL) interval mapping approachVerbyla, A.; Taylor, J.; Verbyla, K.
2012The isolation and characterisation of the wheat molecular ZIPper I homologue, TaZYP1Khoo, K.; Able, A.; Able, J.
2012Genomics: decoding our daily breadLangridge, P.
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.
2014Wheat grain preharvest sprouting and late maturity alpha-amylaseMares, D.; Mrva, K.
2011Hordeum marinum-wheat amphiploids maintain higher leaf K(+):Na(+) and suffer less leaf injury than wheat parents in saline conditionsMunns, R.; James, R.; Islam, A.; Colmer, T.