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Results 21-30 of 41 (Search time: 0.002 seconds).
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PreviewIssue DateTitleAuthor(s)
2011Investigation of a His-rich arabinogalactan-protein for micronutrient biofortification of cereal grainWan Kamaruddin, W.; Preuss, J.; Johnson, A.; Tester, M.; Schultz, C.
2010Binding of β-D-glucosides and β-D-mannosides by rice and barley β-D-glycosidases with distinct substrate specificitiesKuntothom, T.; Raab, M.; Tvaroska, I.; Fort, S.; Pengthaisong, S.; Canada, J.; Calle, L.; Jiminez-Barbero, J.; Cairns, J.; Hrmova, M.
2016MEIOTIC F-BOX is essential for male meiotic DNA double-strand break repair in riceHe, Y.; Wang, C.; Higgins, J.; Yu, J.; Zong, J.; Lu, P.; Zhang, D.; Liang, W.
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.
2018Loss of LOFSEP transcription factor function converts spikelet to leaf-like structures in riceWu, D.; Liang, W.; Zhu, W.; Chen, M.; Ferrándiz, C.; Burton, R.; Dreni, L.; Zhang, D.
2018A rice glutamyl-tRNA synthetase modulates early anther cell division and patterningYang, X.; Li, G.; Tian, Y.; Song, Y.; Liang, W.; Zhang, D.
2012A two-staged model of Na+ exclusion in rice explained by 3D modeling of HKT transporters and alternative splicingCotsaftis, O.; Plett, D.; Shirley, N.; Tester, M.; Hrmova, M.; Baxter, I.
2011Constitutive overexpression of the OsNAS gene family reveals single-gene strategies for effective iron- and zinc-biofortification of rice endospermJohnson, A.; Kyriacou, B.; Callahan, D.; Carruthers, L.; Stangoulis, J.; Lombi, E.; Tester, M.; Baxter, I.
2011Cobalt distribution and speciation: Effect of aging, intermittent submergence, in situ rice rootsBeak, D.; Kirby, J.; Hettiarachchi, G.; Wendling, L.; McLaughlin, M.; Khatiwada, R.
2016Regulatory role of a receptor-like kinase in specifying anther cell identityYang, L.; Qian, X.; Chen, M.; Fei, Q.; Meyers, B.; Liang, W.; Zhang, D.