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首页> 外文期刊>Nature Communications >A novel thiol-reductase activity of Arabidopsis YUC6 confers drought tolerance independently of auxin biosynthesis
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A novel thiol-reductase activity of Arabidopsis YUC6 confers drought tolerance independently of auxin biosynthesis

机译:拟南芥YUC6的新型硫醇还原酶活性赋予植物抗旱性,而与植物生长素的生物合成无关

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摘要

YUCCA (YUC) proteins constitute a family of flavin monooxygenases (FMOs), with an important role in auxin (IAA) biosynthesis. Here we report that Arabidopsis plants overexpressing YUC6 display enhanced IAA-related phenotypes and exhibit improved drought stress tolerance, low rate of water loss and controlled ROS accumulation under drought and oxidative stresses. Co-overexpression of an IAA-conjugating enzyme reduces IAA levels but drought stress tolerance is unaffected, indicating that the stress-related phenotype is not based on IAA overproduction. YUC6 contains a previously unrecognized FAD- and NADPH-dependent thiol-reductase activity (TR) that overlaps with the FMO domain involved in IAA biosynthesis. Mutation of a conserved cysteine residue (Cys-85) preserves FMO but suppresses TR activity and stress tolerance, whereas mutating the FAD- and NADPH-binding sites, that are common to TR and FMO domains, abolishes all outputs. We provide a paradigm for a single protein playing a dual role, regulating plant development and conveying stress defence responses.
机译:YUCCA(YUC)蛋白构成黄素单加氧酶(FMO)家族,在植物生长素(IAA)生物合成中具有重要作用。在这里我们报告说,过量表达YUC6的拟南芥植物表现出增强的IAA相关表型,并表现出提高的干旱胁迫耐受性,低失水率以及在干旱和氧化胁迫下可控制的ROS积累。 IAA共轭酶的共过量表达可降低IAA水平,但干旱胁迫耐受性不受影响,这表明与胁迫相关的表型并非基于IAA过量生产。 YUC6包含以前无法识别的FAD和NADPH依赖性硫醇还原酶活性(TR),该活性与参与IAA生物合成的FMO结构域重叠。保守的半胱氨酸残基(Cys-85)的突变保留了FMO,但抑制了TR的活性和胁迫耐受性,而TR和FMO域共有的FAD和NADPH结合位点的突变则取消了所有输出。我们提供了一种单一蛋白质发挥双重作用的范式,它调节植物发育并传达胁迫防御反应。

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