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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Infectious diseases of marine molluscs and host responses as revealed by genomic tools
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Infectious diseases of marine molluscs and host responses as revealed by genomic tools

机译:基因组工具揭示了海洋软体动物和宿主反应的传染性疾病

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More and more infectious diseases affect marine molluscs. Some diseases have impacted commercial species including MSX and Dermo of the eastern oyster, QPX of hard clams, withering syndrome of abalone and ostreid herpesvirus 1 (OsHV-1) infections of many molluscs. Although the exact transmission mechanisms are not well understood, human activities and associated environmental changes often correlate with increased disease prevalence. For instance, hatcheries and large-scale aquaculture create high host densities, which, along with increasing ocean temperature, might have contributed to OsHV-1 epizootics in scallops and oysters. A key to understanding linkages between the environment and disease is to understand how the environment affects the host immune system. Although we might be tempted to downplay the role of immunity in invertebrates, recent advances in genomics have provided insights into host and parasite genomes and revealed surprisingly sophisticated innate immune systems in molluscs. All major innate immune pathways are found in molluscs with many immune receptors, regulators and effectors expanded. The expanded gene families provide great diversity and complexity in innate immune response, which may be key to mollusc's defence against diverse pathogens in the absence of adaptive immunity. Further advances in host and parasite genomics should improve our understanding of genetic variation in parasite virulence and host disease resistance.
机译:越来越多的传染病影响海洋软体动物。一些疾病影响了商业物种,包括东部牡蛎的MSX和Dermo,硬蛤的QPX,鲍鱼的枯萎综合征和许多软体动物的ostreid疱疹病毒1(OsHV-1)感染。尽管尚不清楚确切的传播机制,但人类活动和相关的环境变化通常与疾病患病率增加有关。例如,孵化场和大规模水产养殖会产生很高的寄主密度,随着海洋温度的升高,可能导致扇贝和牡蛎的OsHV-1流行病。理解环境与疾病之间联系的关键是了解环境如何影响宿主免疫系统。尽管我们可能倾向于淡化无脊椎动物中免疫的作用,但是基因组学的最新进展提供了宿主和寄生虫基因组的见解,并揭示了软体动物中令人惊讶的复杂先天免疫系统。在软体动物中发现了所有主要的先天免疫途径,其中许多免疫受体,调节剂和效应子得以扩展。扩展的基因家族在先天免疫应答中提供了极大的多样性和复杂性,这可能是在缺乏适应性免疫的情况下软体动物对多种病原体的防御的关键。寄主和寄生虫基因组学的进一步发展应增进我们对寄生虫毒力和寄主疾病抗性的遗传变异的了解。

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