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Gibberellin Modulates Anther Development in Rice via the Transcriptional Regulation of GAMYB[W]

机译:赤霉素通过GAMYB的转录调控调控水稻的花药发育[W]

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摘要

Gibberellins (GAs) play important roles in regulating reproductive development, especially anther development. Our previous studies revealed that the MYB transcriptional factor GAMYB, an important component of GA signaling in cereal aleurone cells, is also important for anther development. Here, we examined the physiological functions of GA during anther development through phenotypic analyses of rice (Oryza sativa) GA-deficient, GA-insensitive, and gamyb mutants. The mutants exhibited common defects in programmed cell death (PCD) of tapetal cells and formation of exine and Ubisch bodies. Microarray analysis using anther RNAs of these mutants revealed that rice GAMYB is involved in almost all instances of GA-regulated gene expression in anthers. Among the GA-regulated genes, we focused on two lipid metabolic genes, a cytochrome P450 hydroxylase CYP703A3 and β-ketoacyl reductase, both of which might be involved in providing a substrate for exine and Ubisch body. GAMYB specifically interacted with GAMYB binding motifs in the promoter regions in vitro, and mutation of these motifs in promoter-β-glucuronidase (GUS) transformants caused reduced GUS expression in anthers. Furthermore, a knockout mutant for CYP703A3 showed gamyb-like defects in exine and Ubisch body formation. Together, these results suggest that GA regulates exine formation and the PCD of tapetal cells and that direct activation of CYP703A3 by GAMYB is key to exine formation.
机译:赤霉素(GAs)在调节生殖发育,尤其是花药发育中起重要作用。我们以前的研究表明,MYB转录因子GAMYB是谷物糊粉细胞中GA信号的重要组成部分,对花药发育也很重要。在这里,我们通过对水稻GA缺陷型,GA不敏感型和gamyb突变体的表型分析,研究了GA在花药发育过程中的生理功能。突变体在绒毡层细胞的程序性细胞死亡(PCD)和外ine体和Ubisch体的形成中表现出常见缺陷。使用这些突变体的花药RNA进行的微阵列分析表明,水稻GAMYB几乎参与了花药中GA调控基因表达的所有情况。在GA调控的基因中,我们集中研究了两个脂质代谢基因,即细胞色素P450羟化酶CYP703A3和β-酮酰基还原酶,这两个基因可能都涉及为外来体和Ubisch体提供底物。 GAMYB在体外与启动子区域中的GAMYB结合基序特异性相互作用,启动子-β-葡糖醛酸糖苷酶(GUS)转化子中这些基序的突变导致花药中GUS表达降低。此外,CYP703A3的基因敲除突变体在外and和Ubisch体形成中显示出类盖伊布样缺陷。在一起,这些结果表明,GA调节exine形成和绒毡层细胞的PCD,并且GAMYB对CYP703A3的直接激活是exine形成的关键。

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