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YUCCA8 and YUCCA9 overexpression reveals a link between auxin signaling and lignification through the induction of ethylene biosynthesis

机译:YUCCA8和YUCCA9过表达揭示了通过诱导乙烯生物合成引起的生长素信号传导与木质化之间的联系

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摘要

Auxin is associated with the regulation of virtually every aspect of plant growth and development. Many previous genetic and biochemical studies revealed that, among the proposed routes for the production of auxin, the so-called indole-3-pyruvic acid (IPA) pathway is the main source for indole-3-acetic acid (IAA) in plants. The IPA pathway involves the action of 2 classes of enzymes, tryptophan-pyruvate aminotransferases (TRYPTOPHAN AMINOTRANSFERASE OF ARABIDOPSIS 1(TAA1)/TRYPTOPHAN AMINOTRANSFERASE RELATED (TAR)) and flavin monooxygenases (YUCCA). Both enzyme classes appear to be encoded by small gene families in Arabidopsis consisting of 5 and 11 members, respectively. We recently showed that it is possible to induce transcript accumulation of 2 YUCCA genes, YUC8 and YUC9, by methyl jasmonate treatment. Both gene products were demonstrated to contribute to auxin biosynthesis in planta.1 Here we report that the overexpression of YUC8 as well as YUC9 led to strong lignification of plant aerial tissues. Furthermore, new evidence indicates that this abnormally strong secondary growth is linked to increased levels of ethylene production.
机译:生长素实际上与植物生长发育的各个方面的调节有关。以前的许多遗传和生化研究表明,在提议的生长素生产途径中,所谓的吲哚-3-丙酮酸(IPA)途径是植物中吲哚-3-乙酸(IAA)的主要来源。 IPA途径涉及两类酶的作用,色氨酸-丙酮酸氨基转移酶(阿拉伯糖蛋白1(TAA1)的三乙胺甲基转移酶/与三乙胺丙二酸转移酶相关(TAR)和黄素单加氧酶(YUCCA)。两种酶似乎都由拟南芥中的小基因家族编码,分别由5和11个成员组成。我们最近表明,可以通过茉莉酸甲酯处理诱导2个YUCCA基因YUC8和YUC9的转录本积累。 1 在这里我们报道了YUC8和YUC9的过表达导致植物气生组织的强烈木质化。此外,新的证据表明,这种异常强的次级生长与乙烯产量增加有关。

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