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Rice MADS3 Regulates ROS Homeostasis during Late Anther Development

机译:水稻MADS3在后期花药发育过程中调节ROS稳态

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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.
机译:水稻(Oryza sativa)花卉同源C类基因MADS3先前显示为早期花朵发育期间确定雄蕊身份所需。在这里,我们描述了MADS3在调节后期花药发育和花粉形成中的作用。与此角色一致,MADS3在花药发育后期在绒毡层和小孢子中高表达,新鉴定的MADS3突变体等位基因mads3-4显示出缺陷的花药壁,小孢子流产和完全的雄性不育。在后期花药发育过程中,mads3-4表现出与氧化应激相关的表型。基因芯片分析揭示了mads3-4花药中许多基因的表达水平变化。这些基因中的一些编码参与活性氧(ROS)稳态的蛋白质。其中有MT-1-4b,它编码1型富含Cys的小金属结合蛋白。体内和体外试验表明,MADS3与MT-1-4b的启动子有关,重组MT-1-4b具有超氧阴离子和羟自由基清除活性。减少MT-1-4b的表达会导致花粉繁殖力下降,并导致转基因植物中超氧阴离子水平升高。我们的发现表明,MADS3是一种关键的转录调节因子,至少在一定程度上通过MT-1-4b调节ROS的水平在水稻雄性生殖发育中起作用。

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