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The Arabidopsis YUCCA1 Flavin Monooxygenase Functions in the Indole-3-Pyruvic Acid Branch of Auxin Biosynthesis

机译:拟南芥YUCCA1黄素单加氧酶在生长素生物合成的吲哚-3-丙酮酸分支中的功能

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摘要

The effects of auxins on plant growth and development have been known for more than 100 years, yet our understanding of how plants synthesize this essential plant hormone is still fragmentary at best. Gene loss- and gain-of-function studies have conclusively implicated three gene families, CYTOCHROME P450 79B2/B3 (CYP79B2/B3), YUCCA (YUC), and TRYPTOPHAN AMINOTRANSFERASE OF ARABIDOPSIS1/TRYPTOPHAN AMINOTRANSFERASE-RELATED (TAA1/TAR), in the production of this hormone in the reference plant Arabidopsis thaliana. Each of these three gene families is believed to represent independent routes of auxin biosynthesis. Using a combination of pharmacological, genetic, and biochemical approaches, we examined the possible relationships between the auxin biosynthetic pathways defined by these three gene families. Our findings clearly indicate that TAA1/TARs and YUCs function in a common linear biosynthetic pathway that is genetically distinct from the CYP79B2/B3 route. In the redefined TAA1-YUC auxin biosynthetic pathway, TAA1/TARs are required for the production of indole-3-pyruvic acid (IPyA) from Trp, whereas YUCs are likely to function downstream. These results, together with the extensive genetic analysis of four pyruvate decarboxylases, the putative downstream components of the TAA1 pathway, strongly suggest that the enzymatic reactions involved in indole-3-acetic acid (IAA) production via IPyA are different than those previously postulated, and a new and testable model for how IAA is produced in plants is needed.
机译:生长素对植物生长和发育的影响已经有100多年的历史了,但是我们对植物如何合成这种必需的植物激素的了解充其量只是零碎的。基因丧失和功能获得研究最终涉及了三个基因家族:CYTOCHROME P450 79B2 / B3(CYP79B2 / B3),YUCCA(YUC)和阿拉伯糖与1 / TRYPTOPHAN氨基酸转移相关的TRYPTOPHAN氨基转移酶(TAA1 / TAR)。参考植物拟南芥中这种激素的产生。据信这三个基因家族中的每一个代表生长素生物合成的独立途径。使用药理学,遗传学和生化方法的组合,我们检查了由这三个基因家族定义的生长素生物合成途径之间的可能关系。我们的发现清楚地表明,TAA1 / TAR和YUC在共同的线性生物合成途径中起作用,该途径在遗传上不同于CYP79B2 / B3途径。在重新定义的TAA1-YUC生长素生物合成途径中, TAA1 / TAR 是从Trp生产吲哚-3-丙酮酸(IPyA)所必需的,而 YUC 可能在下游发挥作用。这些结果,以及对 TAA1 途径的假定下游组分的四种丙酮酸脱羧酶的广泛遗传分析,强烈暗示了通过IPyA参与吲哚-3-乙酸(IAA)生产的酶促反应与以前假定的不同,因此需要一种新的可测试的模型来说明植物中IAA的产生方式。

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