转录组景观揭示了二斑蜘蛛螨(Tetranychus urticae)与发育相关的生理过程。

IF 1.8 2区 农林科学 Q2 ENTOMOLOGY Experimental and Applied Acarology Pub Date : 2024-12-01 Epub Date: 2024-08-16 DOI:10.1007/s10493-024-00956-x
Shuo Gao, Yue-Di Niu, Lei Chen, Meng-Fei Chen, Xiao-Li Bing, Xiao-Yue Hong
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引用次数: 0

摘要

双斑蜘蛛螨(Tetranychus urticae Koch,TSSM)是公认的最棘手的蜘蛛螨害虫之一。然而,其关键发育阶段的精确基因表达模式仍然难以捉摸。在这里,我们利用公开的 RNA 测序(RNA-seq)数据对 TSSM 的卵、若虫和成年雌虫进行了全面的转录组分析,以阐明这些发育阶段之间的总体转录组差异。主成分分析和分层聚类分析揭示了不同发育阶段样本之间的明显差异,而不论其沃尔巴克氏体感染状况如何。差异表达分析显示,卵、若虫和成虫中分别富集了 4,089 个、2,762 个和 1,282 个核心基因。KEGG和GO富集分析表明,卵中基因的上调与蛋白质分解、Wnt信号通路、DNA转录、RNA生物合成和代谢过程以及蛋白质折叠、分类和降解途径有关。与此同时,若虫体内与几丁质/氨基酸代谢过程、G 蛋白偶联受体信号通路、单原子离子转运和神经递质转运通路有关的基因数量有所增加。涉及鞘脂和碳水化合物代谢过程、蛋白质分解、脂质转运和定位的途径在老年雌性中尤其丰富。总之,我们的研究结果表明,卵期在细胞分化过程中表现出更高的活性,若虫期更多地参与几丁质的发育,而成虫期则表现出更高的代谢和生殖活性。这项研究加深了我们对蓟马发育的分子机制的了解,为进一步研究蓟马复杂的生理过程铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Transcriptomic landscapes reveal development-related physiological processes in the two-spotted spider mite, Tetranychus urticae.

The two-spotted spider mite (Tetranychus urticae Koch, TSSM) is recognized as one of the most problematic spider mite pests. However, the precise gene expression patterns across its key developmental stages remain elusive. Here, we performed a comprehensive transcriptome analysis of TSSM eggs, nymphs and adult females using publicly available RNA sequencing (RNA-seq) data to elucidate the overarching transcriptomic differences between these developmental stages. Principal component analysis and hierarchical clustering analysis unveiled distinct separations among samples across different developmental stages, regardless of their Wolbachia infection status. Differential expression analysis revealed 4,089,2,762, and 1,282 core genes specifically enriched in eggs, nymphs, and adults, respectively. KEGG and GO enrichment analyses showed upregulation of genes in eggs are associated with proteolysis, Wnt signaling pathway, DNA transcription, RNA biosynthetic and metabolic processes, as well as protein folding, sorting, and degradation pathways. Meanwhile, nymphs exhibited increased abundance of genes related to chitin/amino sugar metabolic processes, G protein-coupled receptor signaling pathways, monoatomic ion transport, and neurotransmitter transport pathways. Pathways involving sphingolipid and carbohydrate metabolic processes, proteolysis, lipid transport, and localization were particularly enriched in older females. Altogether, our findings suggest that the egg stage exhibits higher activity in cell differentiation processes, the nymph stage is more involved in chitin development, and the adult stage shows increased metabolic and reproductive activity. This study enhances our understanding of the molecular mechanisms underlying TSSM development and paves the way for further research into the intricate physiological processes of TSSM.

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来源期刊
CiteScore
3.90
自引率
9.10%
发文量
81
审稿时长
4-8 weeks
期刊介绍: Experimental and Applied Acarology publishes peer-reviewed original papers describing advances in basic and applied research on mites and ticks. Coverage encompasses all Acari, including those of environmental, agricultural, medical and veterinary importance, and all the ways in which they interact with other organisms (plants, arthropods and other animals). The subject matter draws upon a wide variety of disciplines, including evolutionary biology, ecology, epidemiology, physiology, biochemistry, toxicology, immunology, genetics, molecular biology and pest management sciences.
期刊最新文献
Correction: Exudate droplets incorporated on eggs by Raoiella indica Hirst female during oviposition may avoid the predation of Amblyseius largoensis (Muma). Transcriptomic landscapes reveal development-related physiological processes in the two-spotted spider mite, Tetranychus urticae. Unveiled species diversity of moss-feeding mites (Stigmaeidae: Eustigmaeus): a research on their distribution, habitat, and host plant use in Japan. Mite composition in nests of the Japanese wood mouse, Apodemus speciosus (Rodentia: Muridae). Convergent evolution revealed by paraphyly and polyphyly of many taxa of oribatid mites: A molecular approach.
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