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首页> 外文期刊>BioControl: Journal of the International Organization for Biological Control >Application of chemical elicitor (Z)-3-hexenol enhances direct and indirect plant defenses against tea geometrid Ectropis obliqua
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Application of chemical elicitor (Z)-3-hexenol enhances direct and indirect plant defenses against tea geometrid Ectropis obliqua

机译:化学引发剂(Z)-3-己烯醇的应用增强了植物对茶几何形斜c的直接和间接防御能力

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摘要

Plants can respond to herbivorous attack with induced defense mechanisms. Plant elicitors play vital roles in inducing the plant defense response against herbivores. In this study, we investigated the effect of (Z)-3-hexenol (z3HOL), an important component of green leaf volatiles (GLVs), on the induced defense against a tea geometrid (TG) Ectropis obliqua Prout in tea plants. We showed that treatment with z3HOL elicites increased levels of jasmonic acid (JA) and ethylene (ET) as well as of expression of a lipoxygenase gene CsiLOX1 and a putative ACC synthase gene CsiACS1. Such reactions resulted in a marked increase in polyphenol oxidase (PPO) activity and volatile production. The induced tea plants reduced the performance of TG and became highly attractive to the main parasitoid wasp, Apanteles sp. These findings suggest that z3HOL can serve as an elicitor that triggers direct and indirect defense responses against TG by modulating signaling pathways in tea and provide a friendly strategy for biological control of pests.
机译:植物可以通过诱导防御机制来响应草食性攻击。植物引发剂在诱导植物对草食动物的防御反应中起着至关重要的作用。在这项研究中,我们调查了(Z)-3-己烯醇(z3HOL)(绿叶挥发物(GLVs)的重要组成部分)对茶树中茶几何(TG)斜生赤手蜂的诱导防御的作用。我们显示,使用z3HOL进行治疗可引起茉莉酸(JA)和乙烯(ET)的水平升高,以及脂氧合酶基因CsiLOX1和推定的ACC合酶基因CsiACS1的表达。此类反应导致多酚氧化酶(PPO)活性和挥发物产生显着增加。诱导的茶树降低了TG的性能,并且对主要的寄生蜂黄蜂Apanteles sp。高度有吸引力。这些发现表明,z3HOL可以通过调节茶中的信号传导途径来引发针对TG的直接和间接防御反应,并为有害生物的生物防治提供友好策略。

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