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Osa-miR162a 通过调控α-亚麻酸代谢增强水稻对褐飞虱的抗性()。

Osa-miR162a Enhances the Resistance to the Brown Planthopper via α-Linolenic Acid Metabolism in Rice ().

机构信息

Institute of Plant Protection, Guangdong Academy of Agricultural Sciences, Guangdong Provincial Key Laboratory of High Technology for Plant Protection, Guangzhou 510640, Guangdong, China.

State Key Laboratory of Biocontrol, School of Life Sciences, Sun Yat-sen University, Guangzhou 510275, Guangdong, China.

出版信息

J Agric Food Chem. 2023 Aug 9;71(31):11847-11859. doi: 10.1021/acs.jafc.3c02637. Epub 2023 Jul 26.

Abstract

The brown planthopper (BPH) is the most serious pest causing yield losses in rice. MicroRNAs (miRNAs) are emerging as key modulators of plant-pest interactions. In the study, we found that osa-miR162a is induced in response to BPH attack in the seedling stage and tunes rice resistance to the BPH via the α-linolenic acid metabolism pathway as indicated by gas chromatography/liquid chromatography-mass spectrometry analysis. Overexpression of osa-miR162a inhibited the development and growth of the BPH and simultaneously reduced the release of 3-hexenal and 3-hexen-1-ol to block host recognition in the BPH. Moreover, knockdown of , which is targeted by osa-miR162a, inhibited α-linolenic acid metabolism to enhance the resistance to the BPH, which was similar to that in miR162a-overexpressing plants. Our study revealed a novel defense mechanism mediated by plant miRNAs developed during the long-term evolution of plant-host interaction, provided new ideas for the identification of rice resistance resources, and promoted a better understanding of pest control.

摘要

褐飞虱是造成水稻减产的最严重害虫。 microRNAs(miRNAs)正成为植物-害虫相互作用的关键调节因子。在这项研究中,我们发现,在苗期受到褐飞虱攻击时,osa-miR162a 被诱导,通过气相色谱/液相色谱-质谱分析表明,它通过 α-亚麻酸代谢途径来调节水稻对褐飞虱的抗性。过表达 osa-miR162a 抑制了褐飞虱的发育和生长,同时减少了 3-己烯醛和 3-己烯-1-醇的释放,从而阻止了褐飞虱对宿主的识别。此外,靶向 osa-miR162a 的 的敲低抑制了 α-亚麻酸代谢,增强了对褐飞虱的抗性,这与过表达 miR162a 的植物相似。我们的研究揭示了植物 miRNA 在植物-宿主相互作用的长期进化过程中介导的一种新的防御机制,为鉴定水稻抗性资源提供了新的思路,并促进了对害虫防治的更好理解。

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