Tanaka Atsunori, Nakagawa Hitoshi, Tomita Chikako, Shimatani Zenpei, Ohtake Miki, Nomura Takahito, Jiang Chang-Jie, Dubouzet Joseph G, Kikuchi Shoshi, Sekimoto Hitoshi, Yokota Takao, Asami Tadao, Kamakura Takashi, Mori Masaki
Disease Resistance Research Unit, National Institute of Agrobiological Sciences, Tsukuba 305-8602, Japan.
Plant Physiol. 2009 Oct;151(2):669-80. doi: 10.1104/pp.109.140806. Epub 2009 Jul 31.
Brassinosteroids (BRs) are involved in many developmental processes and regulate many subsets of downstream genes throughout the plant kingdom. However, little is known about the BR signal transduction and response network in monocots. To identify novel BR-related genes in rice (Oryza sativa), we monitored the transcriptomic response of the brassinosteroid deficient1 (brd1) mutant, with a defective BR biosynthetic gene, to brassinolide treatment. Here, we describe a novel BR-induced rice gene BRASSINOSTEROID UPREGULATED1 (BU1), encoding a helix-loop-helix protein. Rice plants overexpressing BU1 (BU1:OX) showed enhanced bending of the lamina joint, increased grain size, and resistance to brassinazole, an inhibitor of BR biosynthesis. In contrast to BU1:OX, RNAi plants designed to repress both BU1 and its homologs displayed erect leaves. In addition, compared to the wild type, the induction of BU1 by exogenous brassinolide did not require de novo protein synthesis and it was weaker in a BR receptor mutant OsbriI (Oryza sativa brassinosteroid insensitive1, d61) and a rice G protein alpha subunit (RGA1) mutant d1. These results indicate that BU1 protein is a positive regulator of BR response: it controls bending of the lamina joint in rice and it is a novel primary response gene that participates in two BR signaling pathways through OsBRI1 and RGA1. Furthermore, expression analyses showed that BU1 is expressed in several organs including lamina joint, phloem, and epithelial cells in embryos. These results indicate that BU1 may participate in some other unknown processes modulated by BR in rice.
油菜素甾醇(BRs)参与许多发育过程,并在整个植物界调控许多下游基因子集。然而,关于单子叶植物中的BR信号转导和响应网络,我们了解甚少。为了鉴定水稻(Oryza sativa)中与BR相关的新基因,我们监测了具有缺陷BR生物合成基因的油菜素甾醇缺陷1(brd1)突变体对油菜素内酯处理的转录组反应。在此,我们描述了一个新的BR诱导水稻基因BRASSINOSTEROID UPREGULATED1(BU1),它编码一种螺旋-环-螺旋蛋白。过表达BU1的水稻植株(BU1:OX)表现出叶片关节弯曲增强、籽粒大小增加以及对BR生物合成抑制剂油菜素唑具有抗性。与BU1:OX相反,设计用于抑制BU1及其同源物的RNAi植株表现出叶片直立。此外,与野生型相比,外源油菜素内酯对BU1的诱导不需要从头合成蛋白质,并且在BR受体突变体OsbriI(Oryza sativa brassinosteroid insensitive1,d61)和水稻G蛋白α亚基(RGA1)突变体d1中较弱。这些结果表明,BU1蛋白是BR反应的正调控因子:它控制水稻叶片关节的弯曲,并且是一个新的初级反应基因,通过OsBRI1和RGA1参与两条BR信号通路。此外,表达分析表明,BU1在包括叶片关节、韧皮部和胚胎上皮细胞在内的多个器官中表达。这些结果表明,BU1可能参与水稻中由BR调节的一些其他未知过程。