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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Control of cell elongation and stress responses by steroid hormones and carbon catabolic repression in plants
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Control of cell elongation and stress responses by steroid hormones and carbon catabolic repression in plants

机译:通过类固醇激素和碳分解代谢物抑制来控制细胞伸长和应激反应

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Molecular analysis of Arabidopsis mutants displaying hypocotyl elongation defects in both the dark and light revealed recently that steroids play an essential role as hormones in plants. Deficiencies in brassinosteroid biosynthesis and signalling permit photomorphogenic development and light-regulated gene expression in the dark, and result in severe dwarfism, male sterility and de-repression of stress-induced genes in the light. A cytochrome P450 steroid hydroxylase (CYP90) controls a rate limiting step in brassinosteroid biosynthesis and appears to function as a signalling factor in stress responses. Another key step in steroid biosynthesis is controlled by the Arabidopsis SNF1 kinases that phosphorylate the 3-hydroxy-3methylglutaryl-CoA reductase. The activity of SNF1 kinases is regulated by PRL1, an evolutionarily conserved alpha-importin-binding nuclear WD-protein. The Prl1 mutation results in cell elongation defects, de-repression of numerous stress-induced genes, and augments the sensitivity of plants to glucose, cold stress and several hormones, including cytokinin, ethylene, auxin, and abscisic acid. [References: 29]
机译:拟南芥突变体在黑暗和光亮下均显示下胚轴伸长缺陷的分子分析最近表明,类固醇作为植物中的激素起着至关重要的作用。油菜素甾体生物合成和信号传导的缺陷使得在黑暗中光形态发生发展和光调节基因表达成为可能,并导致严重的侏儒症,雄性不育以及在光照下导致压力诱导基因的抑制。细胞色素P450类固醇羟化酶(CYP90)控制油菜素类固醇生物合成中的限速步骤,并且似乎在应激反应中起信号传递因子的作用。类固醇生物合成的另一个关键步骤是由拟南芥的SNF1激酶控制,该激酶将3-羟基-3甲基戊二酰辅酶A还原酶磷酸化。 SNF1激酶的活性受PRL1调控,PRL1是一种进化上保守的结合α-importin的核WD蛋白。 Prl1突变导致细胞伸长缺陷,抑制许多胁迫诱导的基因,并增强植物对葡萄糖,冷胁迫和几种激素(包括细胞分裂素,乙烯,生长素和脱落酸)的敏感性。 [参考:29]

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