生物
分生组织
拟南芥
基因敲除
同源盒
水稻
细胞分裂素
细胞生物学
调节器
拟南芥
转录组
下调和上调
血管组织
细胞分裂
维管束
基因
植物
转录因子
遗传学
生长素
基因表达
突变体
细胞
作者
Yukiko Yasui,Yoshihiro Ohmori,Yumiko Takebayashi,Hitoshi Sakakibara,Hiroyuki Hirano
出处
期刊:PLOS Genetics
日期:2018-04-23
卷期号:14 (4): e1007365-e1007365
被引量:48
标识
DOI:10.1371/journal.pgen.1007365
摘要
Rice (Oryza sativa) has long and narrow leaves with parallel veins, similar to other grasses. Relative to Arabidopsis thaliana which has oval-shaped leaves, our understanding of the mechanism of leaf development is insufficient in grasses. In this study, we show that OsWOX4, a member of the WUSCHEL-RELATED HOMEOBOX gene family, plays important roles in early leaf development in rice. Inducible downregulation of OsWOX4 resulted in severe defects in leaf development, such as an arrest of vascular differentiation, a partial defect in the early cell proliferation required for midrib formation, and a failure to maintain cellular activity in general parenchyma cells. In situ analysis showed that knockdown of OsWOX4 reduced the expression of two LONELY GUY genes, which function in the synthesis of active cytokinin, in developing vascular bundles. Consistent with this, cytokinin levels were downregulated by OsWOX4 knockdown. Transcriptome analysis further showed that OsWOX4 regulates multiple genes, including those responsible for cell cycle progression and hormone action, consistent with the effects of OsWOX4 downregulation on leaf phenotypes. Collectively, these results suggest that OsWOX4 acts as a key regulator at an early stage of leaf development. Our previous work revealed that OsWOX4 is involved in the maintenance of shoot apical meristem in rice, whereas AtWOX4 is specifically associated with the maintenance of vascular stem cells in Arabidopsis. Thus, the function of the two orthologous genes seems to be diversified between rice and Arabidopsis.
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