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Brassinosteroids control male fertility by regulating the expression of key genes involved in Arabidopsis anther and pollen development

机译:油菜素类固醇通过调节参与拟南芥花药和花粉发育的关键基因的表达来控制男性的生育能力

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摘要

The development of anther and pollen is important for male reproduction, and this process is coordinately regulated by many external and internal cues. In this study, we systematically examined the male reproductive phenotypes of a series of brassinosteroid biosynthetic and signaling mutants and found that, besides the expected cell-expansion defects, these mutants also showed reduced pollen number, viability, and release efficiency. These defects were related with abnormal tapetum and microspore development. Using both real-time quantitative RT-PCR and microarray experiments, we found that the expression of many key genes required for anther and pollen development was suppressed in these mutants. ChIP analysis demonstrated that BES1, an important transcription factor for brassinosteroid signaling, could directly bind to the promoter regions of genes encoding transcription factors essential for anther and pollen development, SPL/NZZ, TDF1, AMS, MS1, and MS2. Taken together, these data lead us to propose that brassinosteroids control male fertility at least in part via directly regulating key genes for anther and pollen development in Arabidopsis. Our work provides a unique mechanism to explain how a phytohormone regulates an essential genetic program for plant development.
机译:花药和花粉的发育对于雄性繁殖很重要,并且这个过程受到许多外部和内部线索的协调调节。在这项研究中,我们系统地检查了一系列油菜素类固醇生物合成和信号转导突变体的雄性生殖表型,发现除了预期的细胞扩增缺陷外,这些突变体还显示出花粉数量,活力和释放效率降低。这些缺陷与绒毡层和小孢子发育异常有关。使用实时定量RT-PCR和微阵列实验,我们发现在这些突变体中,花药和花粉发育所需的许多关键基因的表达受到抑制。 ChIP分析表明,BES1是油菜素甾类信号传导的重要转录因子,可以直接与编码花药和花粉发育所必需的转录因子,SPL / NZZ,TDF1,AMS,MS1和MS2的基因的启动子区域结合。综上所述,这些数据使我们提出,油菜素类固醇至少部分通过直接调节拟南芥花药和花粉发育的关键基因来控制雄性生殖。我们的工作提供了独特的机制来解释植物激素如何调节植物发育的基本遗传程序。

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