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水稻 MADS3 调控花粉囊晚期发育过程中的 ROS 稳态。

Rice MADS3 regulates ROS homeostasis during late anther development.

机构信息

School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

Plant Cell. 2011 Feb;23(2):515-33. doi: 10.1105/tpc.110.074369. Epub 2011 Feb 4.

Abstract

The rice (Oryza sativa) floral homeotic C-class gene, MADS3, was previously shown to be required for stamen identity determination during early flower development. Here, we describe a role for MADS3 in regulating late anther development and pollen formation. Consistent with this role, MADS3 is highly expressed in the tapetum and microspores during late anther development, and a newly identified MADS3 mutant allele, mads3-4, displays defective anther walls, aborted microspores, and complete male sterility. During late anther development, mads3-4 exhibits oxidative stress-related phenotypes. Microarray analysis revealed expression level changes in many genes in mads3-4 anthers. Some of these genes encode proteins involved in reactive oxygen species (ROS) homeostasis; among them is MT-1-4b, which encodes a type 1 small Cys-rich and metal binding protein. In vivo and in vitro assays showed that MADS3 is associated with the promoter of MT-1-4b, and recombinant MT-1-4b has superoxide anion and hydroxyl radical scavenging activity. Reducing the expression of MT-1-4b causes decreased pollen fertility and an increased level of superoxide anion in transgenic plants. Our findings suggest that MADS3 is a key transcriptional regulator that functions in rice male reproductive development, at least in part, by modulating ROS levels through MT-1-4b.

摘要

水稻(Oryza sativa)花同源异型 C 类基因 MADS3 先前被证明在早期花发育过程中决定雄蕊身份。在这里,我们描述了 MADS3 在调节晚期花药发育和花粉形成中的作用。与该作用一致,MADS3 在晚期花药发育过程中在绒毡层和小孢子中高度表达,并且新鉴定的 MADS3 突变等位基因 mads3-4 显示出花药壁缺陷、小孢子败育和完全雄性不育。在晚期花药发育过程中,mads3-4 表现出与氧化应激相关的表型。微阵列分析显示 mads3-4 花药中许多基因的表达水平发生变化。其中一些基因编码参与活性氧(ROS)稳态的蛋白质;其中包括 MT-1-4b,它编码一种 1 型小 Cys 丰富和金属结合蛋白。体内和体外测定表明,MADS3 与 MT-1-4b 的启动子结合,重组 MT-1-4b 具有超氧阴离子和羟基自由基清除活性。降低 MT-1-4b 的表达会导致转基因植物花粉育性降低和超氧阴离子水平升高。我们的研究结果表明,MADS3 是一个关键的转录调节因子,至少部分通过 MT-1-4b 调节 ROS 水平,在水稻雄性生殖发育中起作用。

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