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生长素响应因子 OsARF19 通过正向调控 OsGH3-5 和 OsBRI1 控制水稻叶夹角。

The auxin response factor, OsARF19, controls rice leaf angles through positively regulating OsGH3-5 and OsBRI1.

机构信息

State Key Laboratory of Plant Physiology and Biochemistry, College of Life Sciences, Zhejiang University, Hangzhou, 310058, China.

出版信息

Plant Cell Environ. 2015 Apr;38(4):638-54. doi: 10.1111/pce.12397. Epub 2014 Aug 6.

Abstract

Auxin and brassinosteroid (BR) are important phytohormones for controlling lamina inclination implicated in plant architecture and grain yield. But the molecular mechanism of auxin and BR crosstalk for regulating lamina inclination remains unknown. Auxin response factors (ARFs) control various aspects of plant growth and development. We here report that OsARF19-overexpression rice lines show an enlarged lamina inclination due to increase of its adaxial cell division. OsARF19 is expressed in various organs including lamina joint and strongly induced by auxin and BR. Chromatin immunoprecipitation (ChIP) and yeast one-hybrid assays demonstrate that OsARF19 binds to the promoter of OsGH3-5 and brassinosteroid insensitive 1 (OsBRI1) directing their expression. OsGH3-5-overexpression lines show a similar phenotype as OsARF19-O1. Free auxin contents in the lamina joint of OsGH3-5-O1 or OsARF19-O1 are reduced. OsGH3-5 is localized at the endoplasmic retieulum (ER) matching reduction of the free auxin contents in OsGH3-5-O1. osarf19-TDNA and osgh3-5-Tos17 mutants without erected leaves show a function redundancy with other members of their gene family. OsARF19-overexpression lines are sensitive to exogenous BR treatment and alter the expressions of genes related to BR signalling. These findings provide novel insights into auxin and BR signalling, and might have significant implications for improving plant architecture of monocot crops.

摘要

生长素和油菜素内酯(BR)是控制叶片倾斜的重要植物激素,与植物的形态和产量有关。然而,生长素和 BR 交叉调控叶片倾斜的分子机制尚不清楚。生长素响应因子(ARFs)控制着植物生长和发育的各个方面。我们在这里报告,过表达 OsARF19 的水稻品系由于其腹侧细胞分裂的增加而表现出更大的叶片倾斜。OsARF19 在包括叶片连接处在内的各种器官中表达,并强烈被生长素和 BR 诱导。染色质免疫沉淀(ChIP)和酵母单杂交实验表明,OsARF19 结合到 OsGH3-5 和油菜素不敏感 1(OsBRI1)的启动子上,指导它们的表达。OsGH3-5 过表达系表现出与 OsARF19-O1 相似的表型。OsGH3-5-O1 或 OsARF19-O1 叶片连接处的游离生长素含量减少。OsGH3-5 定位于内质网(ER),与 OsGH3-5-O1 中游离生长素含量的减少相匹配。没有竖立叶片的 osarf19-TDNA 和 osgh3-5-Tos17 突变体表现出与其基因家族其他成员的功能冗余。OsARF19 过表达系对外源 BR 处理敏感,并改变与 BR 信号相关的基因的表达。这些发现为生长素和 BR 信号提供了新的见解,并可能对改良单子叶作物的植物形态具有重要意义。

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