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Results 1-10 of 64 (Search time: 0.002 seconds).
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PreviewIssue DateTitleAuthor(s)
2011Salinity tolerance and Na+ exclusion in wheat: Variability, genetics, mapping populations and QTL analysisShavrukov, Y.; Shamaya, N.; Baho, M.; Edwards, J.; Ramsey, C.; Nevo, E.; Langridge, P.; Tester, M.
2016SLAH1, a homologue of the slow type anion channel SLAC1, modulates shoot Cl⁻ accumulation and salt tolerance in Arabidopsis thalianaQiu, J.; Henderson, S.; Tester, M.; Roy, S.; Gilliham, M.
2011Cation channel activityTester, M.; Kaiser, B.; Carter, S.; Shearer, M.; Plett, D.; Roy, S.; Cotsaftis, O.; Tyerman, S.; Okamoto, M.; Phillips Ormonde Fitzpatrick,; Australian Centre for Plant Functional Genomics Pty Ltd
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.
2010Cell type-specific expression of sodium transporters improves salinity tolerance of ricePlett, D.; Johnson, A.; Jacobs, A.; Tester, M.
2014The Na⁺ transporter, TaHKT1;5-D, limits shoot Na⁺ accumulation in bread wheatByrt, C.; Xu, B.; Krishnan, M.; Lightfoot, D.; Athman, A.; Jacobs, A.; Watson-Haigh, N.; Plett, D.; Munns, R.; Tester, M.; Gilliham, M.
2017Genetics of Na⁺ exclusion and salinity tolerance in Afghani durum wheat landracesShamaya, N.; Shavrukov, Y.; Langridge, P.; Roy, S.; Tester, M.
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.
2019High‐throughput 3D modelling to dissect the genetic control of leaf elongation in barley (Hordeum vulgare)Ward, B.; Brien, C.; Oakey, H.; Pearson, A.; Negrão, S.; Schilling, R.K.; Taylor, J.; Jarvis, D.; Timmins, A.; Roy, S.J.; Tester, M.; Berger, B.; Van Den Hengel, A.
2013Applications of high-throughput plant phenotyping to study nutrient use efficiencyBerger, B.; de Regt, B.; Tester, M.; Maathuis, F.J.M.