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首页> 外文期刊>Frontiers in Plant Science >Insect Herbivory-Elicited GABA Accumulation in Plants is a Wound-Induced, Direct, Systemic, and Jasmonate-Independent Defense Response
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Insect Herbivory-Elicited GABA Accumulation in Plants is a Wound-Induced, Direct, Systemic, and Jasmonate-Independent Defense Response

机译:昆虫草食性植物中GABA的积累是伤口诱导的,直接的,系统的和与茉莉酮酸酯无关的防御反应

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The non-proteinogenic amino acid γ-aminobutyric acid (GABA) is present in all organisms analyzed so far. In invertebrates GABA acts as a neurotransmitter; in plants different functions are under discussion. Among others, its involvement in abiotic stress reactions and as a defensive compound against feeding insects is suggested. GABA is synthesized from glutamate by glutamate decarboxylases and degraded by GABA-transaminases. Here, in Arabidopsis thaliana, gad1/2 double mutants showing reduced GABA concentrations as well as GABA-enriched triple mutants ( gad1/2 x pop2-5 ) were generated and employed for a systematic study of GABA induction, accumulation and related effects in Arabidopsis leaves upon herbivory. The results demonstrate that GABA accumulation is stimulated by insect feeding-like wounding by a robotic caterpillar, MecWorm, as well as by real insect ( Spodoptera littoralis ) herbivory. Higher GABA levels in both plant tissue and artificial dietary supplements in turn affect the performance of feeding larvae. GABA enrichment occurs not only in the challenged but also in adjacent leaf. This induced response is neither dependent on herbivore defense-related phytohormones, jasmonates, nor is jasmonate induction dependent on the presence of GABA. Thus, in Arabidopsis the rapid accumulation of GABA very likely represents a general, direct and systemic defense reaction against insect herbivores.
机译:到目前为止,在所有被分析的生物中都存在非蛋白氨基酸γ-氨基丁酸(GABA)。在无脊椎动物中,GABA充当神经递质。在工厂中,正在讨论不同的功能。特别地,建议其参与非生物胁迫反应并作为抵抗摄食昆虫的防御性化合物。 GABA通过谷氨酸脱羧酶由谷氨酸合成,并通过GABA转氨酶降解。在拟南芥中,产生了显示出降低的GABA浓度的gad1 / 2双突变体以及富含GABA的三重突变体(gad1 / 2 x pop2-5),并将其用于系统性研究GABA在拟南芥中的诱导,积累及其相关作用。叶上有草食。结果表明,机器人毛虫MecWorm以及真正的昆虫(Spodoptera littoralis)食草动物会像昆虫喂食一样,刺激GABA的积累。植物组织和人工膳食补充剂中较高的GABA水平反过来会影响幼虫的摄食性能。 GABA富集不仅发生在受攻击的地方,而且还发生在邻近的叶子中。该诱导的应答既不依赖于草食动物防御相关的植物激素,茉莉酸酯,也不依赖于GABA的存在。因此,在拟南芥中,GABA的快速积累很可能代表了对昆虫食草动物的一般性,直接性和系统性防御反应。

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