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通过模拟马铃薯植株上的食草行为解析马铃薯块茎蛾诱导的早期防御反应

Disentangling the Potato Tuber Moth-Induced Early-Defense Response by Simulated Herbivory in Potato Plants.

作者信息

Mao Zhiyao, Ge Yang, Zhang Yadong, Zhong Jian, Munawar Asim, Zhu Zengrong, Zhou Wenwu

机构信息

State Key Laboratory of Rice Biology, Ministry of Agricultural and Rural Affairs Key Laboratory of Molecular Biology of Crop Pathogens and Insect Pests, Institute of Insect Sciences, Zhejiang University, Hangzhou, China.

Hainan Institute, Zhejiang University, Sanya, China.

出版信息

Front Plant Sci. 2022 May 26;13:902342. doi: 10.3389/fpls.2022.902342. eCollection 2022.

Abstract

Plants rely on the perception of a multitude of herbivory-associated cues (HACs) to activate their defense response to insect herbivores. These stimuli are mainly derived from three functional components, namely, mechanical damage, insect-associated microbe, and insect's chemical cues. While simulated herbivory integrating these stimuli is widely exploited for complementing actual herbivory in clarifying the details of plant-herbivore interaction, breaking down these stimuli and identifying the mechanisms of plant responses associated with them have been less explored. In this study, the components of potato tuber moth (, PTM) herbivory were reorganized in a cumulative way and their impacts on the early defense responses of potato leaf were characterized. We found that simulated and actual herbivory of PTM triggered similar patterns of phytohormonal and transcriptomic responses in potato leaf. Moreover, the microbe in the PTM herbivory stimuli is associated with the regulation of the phytohormones jasmonic acid (JA) and abscisic acid (ABA) since reducing the microbe in HAC could reduce JA while increasing ABA. In addition, seven robust gene modules were identified to illustrate how potato plants respond to different PTM herbivory stimuli when herbivory components increased. Significantly, we found that mechanical damage mainly activated JA-mediated signaling; PTM-derived HACs contributed much more to potato early-defense response and induced signaling molecules such as multiple protein kinases; orally secreted bacteria stimuli could antagonize PTM-derived HACs and modulate plant defense, including repressing phenylpropanoid biosynthesis. Our study broadened the understanding of how potato plants integrate the responses to a multitude of stimuli upon PTM herbivory and evidenced that insect-associated microbes greatly modulated the plants response to insect herbivory.

摘要

植物依靠感知多种与食草动物相关的线索(HACs)来激活其对昆虫食草动物的防御反应。这些刺激主要来自三个功能成分,即机械损伤、与昆虫相关的微生物和昆虫的化学线索。虽然整合这些刺激的模拟食草作用被广泛用于补充实际食草作用,以阐明植物 - 食草动物相互作用的细节,但分解这些刺激并确定与之相关的植物反应机制的研究较少。在本研究中,马铃薯块茎蛾(PTM)食草作用的成分以累积方式重新组合,并对其对马铃薯叶片早期防御反应的影响进行了表征。我们发现PTM的模拟和实际食草作用在马铃薯叶片中引发了类似的植物激素和转录组反应模式。此外,PTM食草作用刺激中的微生物与植物激素茉莉酸(JA)和脱落酸(ABA)的调节有关,因为减少HAC中的微生物会降低JA,同时增加ABA。此外,还鉴定出七个强大的基因模块,以说明当食草作用成分增加时马铃薯植物如何对不同的PTM食草作用刺激做出反应。值得注意的是,我们发现机械损伤主要激活JA介导的信号传导;PTM衍生的HACs对马铃薯早期防御反应的贡献更大,并诱导了多种蛋白激酶等信号分子;口腔分泌的细菌刺激可以拮抗PTM衍生的HACs并调节植物防御,包括抑制苯丙烷类生物合成。我们的研究拓宽了对马铃薯植物如何整合对PTM食草作用多种刺激的反应的理解,并证明与昆虫相关的微生物极大地调节了植物对昆虫食草作用的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc00/9178332/91a348586290/fpls-13-902342-g001.jpg

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