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PreviewIssue DateTitleAuthor(s)
2004Comparative sequence analysis of the region harboring the hardness locus in barley and its colinear region in riceCaldwell, K.; Langridge, P.; Powell, W.
2011Glutamate receptor-like genes form Ca²⁺ channels in pollen tubes and are regulated by pistil D-serineMichard, E.; Lima, P.; Borges, F.; Silva, A.; Portes, M.; Carvalho, J.; Gilliham, M.; Liu, L.; Obermeyer, G.; Feijo, J.
2018The three members of the Arabidopsis Glycosyltransferase Family 92 are functional β-1,4-galactan synthasesEbert, B.; Birdseye, D.; Liwanag, A.J.M.; Laursen, T.; Rennie, E.A.; Guo, X.; Catena, M.; Rautengarten, C.; Stonebloom, S.H.; Gluza, P.; Pidatala, V.R.; Andersen, M.C.F.; Cheetamun, R.; Mortimer, J.C.; Heazlewood, J.L.; Bacic, A.; Clausen, M.H.; Willats, W.G.T.; Scheller, H.V.
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.
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.
2006Simultaneous high-throughput recombinational cloning of open reading frames in closed and open configurationsUnderwood, B.; Vanderhaeghen, R.; Whitford, R.; Town, C.; Hilson, P.
2006Cellulose synthase-like CslF genes mediate the synthesis of cell wall (1,3;1,4)-beta-D-glucansBurton, R.; Wilson, S.; Hrmova, M.; Harvey, A.; Shirley, N.; Medhurst, A.; Stone, B.; Newbigin, E.; Bacic, A.; Fincher, G.
2003Identification of a plant nitric oxide synthase gene involved in hormonal signalingGuo, F.; Okamoto, M.; Crawford, N.
2011Analysis of anther transcriptomes to identify genes contributing to meiosis and male gametophyte development in riceDeveshwar, P.; Bovill, W.; Sharma, R.; Able, J.; Kapoor, S.
2011Reduced expression of the SHORT-ROOT gene increases the rates of growth and development in hybrid Poplar and ArabidosisWang, J.; Andersson-Gunneras, S.; Gaboreanu, I.; Hertzberg, M.; Tucker, M.; Zheng, B.; Lesniewska, J.; Mellerowicz, E.; Laux, T.; Sandberg, G.; Jones, B.; Schönbach, C.