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PreviewIssue DateTitleAuthor(s)
2007Joint modeling of additive and non-additive (genetic line) effects in multi-environment trialsOakey, H.; Verbyla, A.; Cullis, B.; Wei, X.; Pitchford, W.
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.
2017A genetic screen for impaired systemic RNAi highlights the crucial role of DICER-LIKE 2Taochy, C.; Gursanscky, N.; Cao, J.; Fletcher, S.; Dressel, U.; Mitter, N.; Tucker, M.; Koltunow, A.; Bowman, J.; Vaucheret, H.; Carroll, B.
2020Dissecting new genetic components of salinity tolerance in two-row spring barley at the vegetative and reproductive stagesSaade, S.; Brien, C.; Pailles, Y.; Berger, B.; Shahid, M.; Russell, J.; Waugh, R.; Negrão, S.; Tester, M.; Li, C.
2019Barley grain (1,3;1,4)-β-glucan content: effects of transcript and sequence variation in genes encoding the corresponding synthase and endohydrolase enzymesGarcia-Gimenez, G.; Russell, J.; Aubert, M.K.; Fincher, G.B.; Burton, R.A.; Waugh, R.; Tucker, M.R.; Houston, K.
2019Barley yield formation under abiotic stress depends on the interplay between flowering time genes and environmental cuesWiegmann, M.; Maurer, A.; Pham, A.; March, T.J.; Al-Abdallat, A.; Thomas, W.T.B.; Bull, H.J.; Shahid, M.; Eglinton, J.; Baum, M.; Flavell, A.J.; Tester, M.; Pillen, K.
2021MADS1 maintains barley spike morphology at high ambient temperaturesLi, G.; Kuijer, H.N.J.; Yang, X.; Liu, H.; Shen, C.; Shi, J.; Betts, N.; Tucker, M.R.; Liang, W.; Waugh, R.; Burton, R.A.; Zhang, D.
2017The evolution of Lachancea thermotolerans is driven by geographical determination, anthropisation and flux between different ecosystemsHranilovic, A.; Bely, M.; Masneuf-Pomarede, I.; Jiranek, V.; Albertin, W.; Fairhead, C.
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.
2011Rice MADS6 interacts with the floral homeotic genes SUPERWOMAN1, MADS3, MADS58, MADS13, and DROOPING LEAF in specifying floral organ identities and meristem fateLi, H.; Liang, W.; Hu, Y.; Zhu, L.; Yin, C.; Xu, J.; Dreni, L.; Kater, M.; Zhang, D.