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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能力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,表明胁迫相关表型并非基于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。我们为单一蛋白发挥双重作用提供了范例,它调节植物发育并传达胁迫防御反应。

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