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Results 1-10 of 14 (Search time: 0.002 seconds).
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PreviewIssue DateTitleAuthor(s)
2013Applications of high-throughput plant phenotyping to study nutrient use efficiencyBerger, B.; de Regt, B.; Tester, M.; Maathuis, F.J.M.
2014Image-based phenotyping for non-destructive screening of different salinity tolerance traits in riceHairmansis, A.; Berger, B.; Tester, M.; Roy, S.
2015Different NaCl-induced calcium signatures in the arabidopsis thaliana ecotypes Col-0 and C24Schmöckel, S.; Garcia, A.; Berger, B.; Tester, M.; Webb, A.; Roy, S.; Pandey, G.
2015Comparison of leaf sheath transcriptome profiles with physiological traits of bread wheat cultivars under salinity stressTakahashi, F.; Tilbrook, J.; Trittermann, C.; Berger, B.; Roy, S.; Seki, M.; Shinozaki, K.; Tester, M.; Yang, G.
2010High-throughput shoot imaging to study drought responsesBerger, B.; Parent, B.; Tester, M.
2011Accurate inference of shoot biomass from high-throughput images of cereal plantsgolzarian, M.; Frick, R.; Rajendran, K.; Berger, B.; Roy, S.; Tester, M.; Lun, D.
2013Accounting for variation in designing greenhouse experiments with special reference to greenhouses containing plants on conveyor systemsBrien, C.; Berger, B.; Rabie, H.; Tester, M.
2016Salinity tolerance loci revealed in rice using high-throughput non-invasive phenotypingAl-Tamimi, N.; Brien, C.; Oakey, H.; Berger, B.; Saade, S.; Ho, Y.; Schmöckel, S.; Tester, M.; Negrão, S.
2014Expression of the Arabidopsis vacuolar H⁺-pyrophosphatase gene (AVP1) improves the shoot biomass of transgenic barley and increases grain yield in a saline fieldSchilling, R.; Marschner, P.; Shavrukov, Y.; Berger, B.; Tester, M.; Roy, S.; Plett, D.
2014High-throughput phenotyping to detect drought tolerance QTL in wild barley introgression linesHonsdorf, N.; March, T.; Berger, B.; Tester, M.; Pillen, K.; Zhang, T.