甲壳类和软体动物的血淋巴微生物群和宿主免疫

Rohit Rathour, Yingxue Ma, Jinbo Xiong, Xian-Wei Wang, Jillian Petersen, Xinxu Zhang
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摘要

没有宣布。利益冲突甲壳类和软体动物具有重要的经济意义,也是水生生物地球化学循环的关键参与者。然而,疾病暴发、温度波动、污染物和其他压力因素严重威胁着它们的全球生产。无脊椎动物通常依靠它们的先天免疫系统作为主要的防御机制,在细胞和体液水平上运作以抵御病原体。血淋巴在免疫反应中起着至关重要的作用,它含有与宿主免疫过程相互作用的微生物群落。宏基因组学、亚转录组学、宏蛋白质组学和代谢组学等分子方法的重大进展揭示了驻留血淋巴微生物组的存在,并描绘了其在免疫稳态和整体宿主健康中的潜在重要作用。因此,了解血淋巴微生物群的组成和作用,以及先天免疫反应,已成为最近旨在揭示疾病抵抗机制和支持可持续水产养殖实践的研究的重点。本文综述了影响甲壳类和软体动物血淋巴微生物群多样性的宿主和环境因素的最新研究进展。我们还考虑了宿主的先天免疫反应,因为这些调节宿主、微生物和环境之间的相互作用。血淋巴微生物组内的相互作用显著影响宿主健康,为推进可持续水产养殖提供重要见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hemolymph microbiota and host immunity of crustaceans and mollusks
None declared.Conflicts of interestCrustaceans and mollusks have major economic importance and are also key players in aquatic biogeochemical cycles. However, disease outbreaks, temperature fluctuations, pollutants, and other stressors have severely threatened their global production. Invertebrates generally rely on their innate immune system as the primary defence mechanism, operating at cellular and humoral levels to protect against pathogens. The hemolymph plays a vital role in immune responses, containing microbial communities that interact with the host’s immune processes. Significant advances in molecular methods such as metagenomics, metatranscriptomics, metaproteomics, and metabolomics have revealed the presence of a resident hemolymph microbiome and delineated its potentially vital role in immune homeostasis and overall host health. Accordingly, understanding the composition and role of the hemolymph microbiota, alongside innate immune responses, has become a key focus in recent research aimed at unravelling disease resistance mechanisms and supporting sustainable aquaculture practices. Here, we summarize the latest advancements in understanding the host and environmental factors that shape hemolymph microbiota diversity in various crustaceans and mollusks species. We also consider the innate immune responses of the hosts, as these modulate interactions between hosts, microbes, and environments. Interactions within the hemolymph microbiome significantly affect host health, providing critical insights for advancing sustainable aquaculture.
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