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PreviewIssue DateTitleAuthor(s)
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.
2020Barley sodium content is regulated by natural variants of the Na+ transporter HvHKT1;5Houston, K.; Jiaen, Q.; Wege, S.; Oakey, H.; Hrmova, M.; Qu, Y.; Smith, P.; Situmorang, A.; Macaulay, M.; Flis, P.; Bayer, M.; Roy, S.; Halpin, C.; Russell, J.; Schreiber, M.; Byrt, C.; Gilliham, M.; Salt, D.; Waugh, R.
2009Manipulation of alternative oxidase can influence salt tolerance in Arabidopsis thalianaSmith, C.; Melino, V.; Sweetman, C.; Soole, K.
2013Salicylic acid improves salinity tolerance in Arabidopsis by restoring membrane potential and preventing salt-induced K⁺ loss via a GORK channelJayakannan, M.; Bose, J.; Babourina, O.; Rengel, Z.; Shabala, S.
2010Development and application of gene-based markers for the major rice QTL Phosphorus uptake 1Chin, J.; Lu, X.; Haefele, S.; Gamuyao, R.; Ismail, A.; Wissuwa, M.; Heuer, S.
2016Identification of a stelar-localized transport protein that facilitates root-to-shoot transfer of chloride in arabidopsisLi, B.; Byrt, C.; Qiu, J.; Baumann, U.; Hrmova, M.; Evrard, A.; Johnson, A.; Birnbaum, K.; Mayo, G.; Jha, D.; Henderson, S.; Tester, M.; Gilliham, M.; Roy, S.
2015Unmasking novel loci for internal phosphorus utilization efficiency in rice germplasm through genome-wide association analysisWissuwa, M.; Kondo, K.; Fukuda, T.; Mori, A.; Rose, M.; Pariasca-Tanaka, J.; Kretzschmar, T.; Haefele, S.; Rose, T.; Wang, T.
2009Shoot Na+ exclusion and increased salinity tolerance engineered by cell type-specific alteration of Na+ transport in arabidopsisMoller, I.; Gilliham, M.; Jha, D.; Mayo, G.; Roy, S.; Coates, J.; Haseloff, J.; Tester, M.
2009Suboptimal temperature favors reserve information in biennial carrot (Daucus carota) plantsGonzalez, M.; Sadras, V.; Equiza, M.; Tognetti, J.
2003Microarray analysis of the nitrate response in Arabidopsis roots and shoots reveals over 1,000 rapidly responding genes and new linkages to glucose, trehalose-6-phosphate, iron, and sulfate metabolismWang, R.; Okamoto, M.; Xing, X.; Crawford, N.