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感染 后Toll、Imd和JAK/STAT信号通路介导的免疫反应相关基因的诱导表达模式

Induced expression modes of genes related to Toll, Imd, and JAK/STAT signaling pathway-mediated immune response in infected with .

作者信息

Li Jihu, Mao Yongkai, Yi Jiequn, Lin Mingjiang, Xu Hanliang, Cheng Yinjie, Wu Han, Liu Jianbai

机构信息

Institute of Nanfan and Seed Industry, Guangdong Academy of Sciences, Guangzhou, China.

出版信息

Front Physiol. 2023 Aug 24;14:1249662. doi: 10.3389/fphys.2023.1249662. eCollection 2023.

Abstract

is one of the most harmful pests that attack maize and other major food crops and causes huge economic loss every year in China and other countries and regions. , a kind of entomological fungus that is highly pathogenic to pests, is harmless to the environment and human beings. However, at present, has gradually developed resistance to many pesticides and microbial insecticides. In this study, transcriptome sequencing was conducted to analyze the differences in gene expression between -infected and -uninfected . More than 160 Gb of clean data were obtained as 150-bp paired-end reads using the Illumina HiSeq™ 4000 platform, and 2,767 and 2,892 DEGs were identified in LH36vsCK36 and LH144vsCK144, respectively. In order to explore the roles of JAK/STAT, Toll, and Imd signaling pathways in antifungal immune response in against infection, the expression patterns of those signaling pathway-related genes in -infected were analyzed by quantitative real-time PCR. In addition, antifungal activity experiments revealed that the suppression of JAK/STAT, Toll, and Imd signaling pathways by inhibitors could inhibit the antifungal activity to a large extent and lead to increased sensitivity of . to infection, indicating that JAK/STAT, Toll, and Imd signaling pathways and their associated genes might be involved in the synthesis and secretion of antifungal substances. This study implied that JAK/STAT, Toll, and Imd signaling pathways played crucial roles in the antifungal immune response of the larvae, in which the related genes of these signaling pathways could play special regulatory roles in signal transduction. This study would improve our understanding of the molecular mechanisms underlying innate immunity and provide the basis for a wide spectrum of strategies against antifungal resistance of .

摘要

是攻击玉米和其他主要粮食作物的最有害害虫之一,在中国以及其他国家和地区每年造成巨大的经济损失。白僵菌是一种对害虫具有高致病性的昆虫病原真菌,对环境和人类无害。然而,目前它已逐渐对许多农药和微生物杀虫剂产生抗性。在本研究中,进行了转录组测序以分析感染白僵菌和未感染白僵菌的(某种昆虫,原文未提及具体名称)之间的基因表达差异。使用Illumina HiSeq™ 4000平台获得了超过160 Gb的150 bp双端测序的clean数据,并且在LH36vsCK36和LH144vsCK144中分别鉴定出2,767个和2,892个差异表达基因(DEGs)。为了探究JAK/STAT、Toll和Imd信号通路在(某种昆虫,原文未提及具体名称)抗白僵菌免疫反应中的作用,通过定量实时PCR分析了这些信号通路相关基因在感染白僵菌的(某种昆虫,原文未提及具体名称)中的表达模式。此外,抗真菌活性实验表明,抑制剂对JAK/STAT、Toll和Imd信号通路的抑制可在很大程度上抑制抗真菌活性,并导致(某种昆虫,原文未提及具体名称)对感染白僵菌的敏感性增加,这表明JAK/STAT、Toll和Imd信号通路及其相关基因可能参与抗真菌物质的合成和分泌。本研究表明JAK/STAT、Toll和Imd信号通路在(某种昆虫,原文未提及具体名称)幼虫的抗真菌免疫反应中起关键作用,其中这些信号通路的相关基因可能在信号转导中发挥特殊的调节作用。本研究将增进我们对先天免疫潜在分子机制的理解,并为针对(某种昆虫,原文未提及具体名称)抗真菌抗性的广泛策略提供依据。

需注意,原文中存在部分指代不明的情况(如未明确的昆虫名称等),翻译可能会稍显晦涩,但已尽力忠实于原文进行翻译。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/637d/10484109/0f321d7c177e/fphys-14-1249662-g001.jpg

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