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Auxin Is Rapidly Induced by Herbivore Attack and Regulates a Subset of Systemic Jasmonate-Dependent Defenses

机译:生长素被草食动物的攻击迅速诱导并调节系统的依赖于茉莉酮酸酯的防御系统

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摘要

Plant responses to herbivore attack are regulated by phytohormonal networks. To date, the role of the auxin indole-3-acetic acid (IAA) in this context is not well understood. We quantified and manipulated the spatiotemporal patterns of IAA accumulation in herbivore-attacked Nicotiana attenuata plants to unravel its role in the regulation of plant secondary metabolism. We found that IAA is strongly, rapidly, and specifically induced by herbivore attack. IAA is elicited by herbivore oral secretions and fatty acid conjugate elicitors and is accompanied by a rapid transcriptional increase of auxin biosynthetic YUCCA-like genes. IAA accumulation starts 30 to 60 s after local induction and peaks within 5 min after induction, thereby preceding the jasmonate (JA) burst. IAA accumulation does not require JA signaling and spreads rapidly from the wound site to systemic tissues. Complementation and transport inhibition experiments reveal that IAA is required for the herbivore-specific, JA-dependent accumulation of anthocyanins and phenolamides in the stems. In contrast, IAA does not affect the accumulation of nicotine or 7-hydroxygeranyllinalool diterpene glycosides in the same tissue. Taken together, our results uncover IAA as a rapid and specific signal that regulates a subset of systemic, JA-dependent secondary metabolites in herbivore-attacked plants.
机译:植物对草食动物攻击的反应受植物激素网络调节。迄今为止,在这种情况下植物生长素吲哚-3-乙酸(IAA)的作用尚不十分清楚。我们量化和操纵食草动物攻击的烟草弱烟中IAA积累的时空模式,以阐明其在调节植物次生代谢中的作用。我们发现IAA是由草食动物攻击强烈,迅速且特异性诱导的。 IAA由草食动物的口腔分泌物和脂肪酸共轭物引发,并伴随着植物生长素生物合成类YUCCA基因的快速转录增加。 IAA积累在局部诱导后30到60 s开始,并在诱导后5分钟内达到峰值,从而提前茉莉酸(JA)爆发。 IAA积累不需要JA信号传导,并从伤口部位迅速扩散到全身组织。补充和运输抑制实验表明,IAA是草食动物特异性,JA依赖的茎中花色苷和酚酰胺积累的必需元素。相比之下,IAA不会影响尼古丁或7-羟基香兰醇双萜糖苷在同一组织中的积累。综上所述,我们的研究结果揭示了IAA是一种快速而特异的信号,可调节食草动物侵袭性植物中全身性,依赖JA的次生代谢产物的子集。

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