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首页> 外文期刊>Frontiers in Plant Science >Gene Regulatory Network for Tapetum Development in Arabidopsis thaliana
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Gene Regulatory Network for Tapetum Development in Arabidopsis thaliana

机译:拟南芥(Arabidopsis thaliana)绒毡层发育的基因调控网络

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In flowering plants, male gametophyte development occurs in the anther. Tapetum, the innermost of the four anther somatic layers, surrounds the developing reproductive cells to provide materials for pollen development. A genetic pathway of DYT1 - TDF1 - AMS - MS188 in regulating tapetum development has been proven. Here we used laser microdissection and pressure catapulting to capture and analyze the transcriptome data for the Arabidopsis tapetum at two stages. With a comprehensive analysis by the microarray data of dyt1 , tdf1 , ams , and ms188 mutants, we identified possible downstream genes for each transcription factor. These transcription factors regulate many biological processes in addition to activating the expression of the other transcription factor. Briefly, DYT1 may also regulate early tapetum development via E3 ubiquitin ligases and many other transcription factors. TDF1 is likely involved in redox and cell degradation. AMS probably regulates lipid transfer proteins, which are involved in pollen wall formation, and other E3 ubiquitin ligases, functioning in degradating proteins produced in previous processes. MS188 is responsible for most cell wall-related genes, functioning both in tapetum cell wall degradation and pollen wall formation. These results propose a more complex gene regulatory network for tapetum development and function.
机译:在开花植物中,雄配子体发育发生在花药中。 Tapetum是四个花药体细胞层的最内层,包围发育中的生殖细胞,为花粉发育提供物质。 DYT1-TDF1-AMS-MS188调控绒毡层发育的遗传途径已被证明。在这里,我们使用激光显微切割和压力弹射来捕获和分析两个阶段的拟南芥绒毡层的转录组数据。通过对dyt1,tdf1,ams和ms188突变体的微阵列数据进行全面分析,我们确定了每个转录因子的可能下游基因。这些转录因子除了激活其他转录因子的表达外,还调节许多生物学过程。简而言之,DYT1还可以通过E3泛素连接酶和许多其他转录因子调节绒毡层的早期发育。 TDF1可能参与氧化还原和细胞降解。 AMS可能调节参与花粉壁形成的脂质转移蛋白和其他E3泛素连接酶,从而降解先前过程中产生的蛋白。 MS188负责大多数细胞壁相关基因,在绒毡层细胞壁降解和花粉壁形成中起作用。这些结果为绒毡层的发育和功能提出了一个更复杂的基因调控网络。

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