Genome-wide identification and coexpression network analysis of heat shock protein superfamily in Apolygus lucorum

IF 1.5 4区 农林科学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Archives of Insect Biochemistry and Physiology Pub Date : 2024-08-25 DOI:10.1002/arch.22145
Yuan-Yuan Li,  Deligeer, Jing Liu, Kai Shi
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Abstract

Heat shock proteins (Hsp) function as crucial molecular chaperones, playing pivotal roles in insects' response to stress stimuli. Apolygus lucorum, known for its broad spectrum of host plants and significant crop damage potential, presents a compelling subject for understanding stress response mechanisms. Hsp is important for A. lucorum to tolerate temperature and insecticide stress and may be involved in the formation of resistance to the interactive effects of temperature and insecticide. Here, we employed comprehensive genomic approaches to identify Hsp superfamily members in its genome. In total, we identified 42 Hsp genes, including 3 Hsp90, 16 Hsp70, 13 Hsp60, and 10 Hsp20. Notably, we conducted motif analysis and gene structures for Hsp members, which suggested the same families are relatively conserved. Furthermore, leveraging the weighted gene coexpression network analysis, we observed diverse expression patterns of different Hsp types across various tissues, with certain Hsp70 showing tissue-specific bias. Noteworthy among the highly expressed Hsp genes was testis-specific, which may serve as a pivotal hub gene regulating the gene network. Our findings shed light on the molecular evolutionary dynamics and temperature stress response mechanisms of Hsp genes in A. lucorum, offering insights into its adaptive strategies and potential targets for pest management.

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热休克蛋白超家族的全基因组鉴定和共表达网络分析。
热休克蛋白(Hsp)是一种重要的分子伴侣蛋白,在昆虫对应激刺激的反应中发挥着关键作用。蝇蛆(Apolygus lucorum)以其广泛的寄主植物和对农作物的巨大破坏潜力而闻名,是了解应激反应机制的一个引人注目的课题。Hsp对A. lucorum耐受温度和杀虫剂胁迫非常重要,并可能参与形成对温度和杀虫剂交互作用的抗性。在此,我们采用了全面的基因组学方法来鉴定其基因组中的 Hsp 超家族成员。我们总共鉴定了 42 个 Hsp 基因,包括 3 个 Hsp90、16 个 Hsp70、13 个 Hsp60 和 10 个 Hsp20。值得注意的是,我们对 Hsp 成员进行了主题分析和基因结构分析,结果表明同一家族具有相对保守性。此外,通过加权基因共表达网络分析,我们观察到不同类型的 Hsp 在不同组织中的表达模式各不相同,其中某些 Hsp70 具有组织特异性。值得注意的是,在高表达的 Hsp 基因中,睾丸特异性基因可能是调控基因网络的关键枢纽基因。我们的发现揭示了A. lucorum中Hsp基因的分子进化动态和温度胁迫响应机制,为其适应策略和潜在的害虫管理目标提供了启示。
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来源期刊
CiteScore
4.30
自引率
4.50%
发文量
115
审稿时长
12 months
期刊介绍: Archives of Insect Biochemistry and Physiology is an international journal that publishes articles in English that are of interest to insect biochemists and physiologists. Generally these articles will be in, or related to, one of the following subject areas: Behavior, Bioinformatics, Carbohydrates, Cell Line Development, Cell Signalling, Development, Drug Discovery, Endocrinology, Enzymes, Lipids, Molecular Biology, Neurobiology, Nucleic Acids, Nutrition, Peptides, Pharmacology, Pollinators, Proteins, Toxicology. Archives will publish only original articles. Articles that are confirmatory in nature or deal with analytical methods previously described will not be accepted.
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