Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, China.
Cell Res. 2010 Aug;20(8):935-47. doi: 10.1038/cr.2010.109. Epub 2010 Jul 20.
As an important agronomic trait, inclination of leaves is crucial for crop architecture and grain yields. To understand the molecular mechanism controlling rice leaf angles, one rice leaf inclination2 (lc2, three alleles) mutant was identified and functionally characterized. Compared to wild-type plants, lc2 mutants have enlarged leaf angles due to increased cell division in the adaxial epidermis of lamina joint. The LC2 gene was isolated through positional cloning, and encodes a vernalization insensitive 3-like protein. Complementary expression of LC2 reversed the enlarged leaf angles of lc2 plants, confirming its role in controlling leaf inclination. LC2 is mainly expressed in the lamina joint during leaf development, and particularly, is induced by the phytohormones abscisic acid, gibberellic acid, auxin, and brassinosteroids. LC2 is localized in the nucleus and defects of LC2 result in altered expression of cell division and hormone-responsive genes, indicating an important role of LC2 in regulating leaf inclination and mediating hormone effects.
作为一个重要的农艺性状,叶片倾斜对于作物结构和谷物产量至关重要。为了理解控制水稻叶片角度的分子机制,鉴定并功能表征了一个水稻叶片倾斜 2(lc2,三个等位基因)突变体。与野生型植物相比,lc2 突变体由于叶舌节的近轴表皮细胞分裂增加而导致叶片角度增大。通过定位克隆分离出 LC2 基因,其编码一个春化不敏感 3 样蛋白。LC2 的互补表达逆转了 lc2 植物的增大叶片角度,证实了其在控制叶片倾斜中的作用。LC2 在叶片发育过程中主要在叶舌节表达,特别是受到植物激素脱落酸、赤霉素、生长素和油菜素内酯的诱导。LC2 定位于细胞核中,LC2 的缺陷导致细胞分裂和激素应答基因的表达改变,表明 LC2 在调节叶片倾斜和介导激素作用方面起着重要作用。