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Results 11-20 of 94 (Search time: 0.002 seconds).
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PreviewIssue DateTitleAuthor(s)
2019Cold influences male reproductive development in plants: a hazard to fertility, but a window for evolutionLiu, B.; Mo, W.J.; Zhang, D.; De Storme, N.; Geelen, D.
2017The polyketide synthase OsPKS2 is essential for pollen exine and Ubisch body patterning in riceZhu, X.; Yu, J.; Shi, J.; Tohge, T.; Fernie, A.; Meir, S.; Aharoni, A.; Xu, D.; Zhang, D.; Liang, W.
2019Genome-wide analysis of the barley non-specific lipid transfer protein gene familyZhang, M.; Kim, Y.; Zong, J.; Lin, H.; Dievart, A.; Li, H.; Zhang, D.; Liang, W.
2013A CL-WOX signalling module regulates root meristem maintenance and vascular tissue development in riceChu, H.; Liang, W.; Li, J.; Hong, F.; Wu, Y.; Wang, L.; Wang, J.; Wu, P.; Liu, C.; Zhang, Q.; Xu, J.; Zhang, D.
2010Carbon starved anther encodes a MYB domain protein that regulates sugar partitioning required for rice pollen developmentZhang, H.; Liang, W.; Yang, X.; Luo, X.; Jiang, N.; Ma, H.; Zhang, D.
2011Rice MADS6 interacts with the floral homeotic genes SUPERWOMAN1, MADS3, MADS58, MADS13, and DROOPING LEAF in specifying floral organ identities and meristem fateLi, H.; Liang, W.; Hu, Y.; Zhu, L.; Yin, C.; Xu, J.; Dreni, L.; Kater, M.; Zhang, D.
2011Genetic interaction of OsMADS3, DROOPING LEAF, and OsMADS13 in specifying rice floral organ identities and meristem determinacyLi, H.; Liang, W.; Yin, C.; Zhu, L.; Zhang, D.
2012ANAP: an integrated knowledge base for Arabidopsis protein interaction network analysisWang, C.; Marshall, A.; Zhang, D.; Wilson, Z.
2014The rice basic helix-loop-helix transcription factor TDR INTERACTING PROTEIN2 is a central switch in early anther developmentFu, Z.; Yu, J.; Cheng, X.; Zong, X.; Xu, J.; Chen, M.; Li, Z.; Zhang, D.; Liang, W.
2013OsMADS16 genetically interacts with OsMADS3 and OsMADS58 in specifying floral patterning in riceYun, D.; Liang, W.; Dreni, L.; Yin, C.; Zhou, Z.; Kater, M.; Zhang, D.