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与两种对病毒感染表现出不同易感性的牡蛎疱疹病毒1和太平洋牡蛎相互作用的比较蛋白质组学

Comparative Proteomics of Ostreid Herpesvirus 1 and Pacific Oyster Interactions With Two Families Exhibiting Contrasted Susceptibility to Viral Infection.

作者信息

Leprêtre Maxime, Faury Nicole, Segarra Amélie, Claverol Stéphane, Degremont Lionel, Palos-Ladeiro Mélissa, Armengaud Jean, Renault Tristan, Morga Benjamin

机构信息

Université de Reims Champagne-Ardenne, UMR-I 02 INERIS-URCA-ULH SEBIO Unité Stress Environnementaux et BIOsurveillance des milieux aquatiques, UFR Sciences Exactes et Naturelles, Campus du Moulin de la Housse, Reims, France.

SG2M-LGPMM, Laboratoire De Génétique Et Pathologie Des Mollusques Marins, Ifremer, La Tremblade, France.

出版信息

Front Immunol. 2021 Jan 18;11:621994. doi: 10.3389/fimmu.2020.621994. eCollection 2020.

Abstract

Massive mortality outbreaks affecting Pacific oysters () spat/juveniles are often associated with the detection of a herpesvirus called ostreid herpesvirus type 1 (OsHV-1). In this work, experimental infection trials of spat with OsHV-1 were conducted using two contrasted Pacific oyster families for their susceptibility to viral infection. Live oysters were sampled at 12, 26, and 144 h post infection (hpi) to analyze host-pathogen interactions using comparative proteomics. Shotgun proteomics allowed the detection of seven viral proteins in infected oysters, some of them with potential immunomodulatoy functions. Viral proteins were mainly detected in susceptible oysters sampled at 26 hpi, which correlates with the mortality and viral load observed in this oyster family. Concerning the Pacific oyster proteome, more than 3,000 proteins were identified and contrasted proteomic responses were observed between infected A- and P-oysters, sampled at different post-injection times. Gene ontology (GO) and KEGG pathway enrichment analysis performed on significantly modulated proteins uncover the main immune processes (such as RNA interference, interferon-like pathway, antioxidant defense) which contribute to the defense and resistance of Pacific oysters to viral infection. In the more susceptible Pacific oysters, results suggest that OsHV-1 manipulate the molecular machinery of host immune response, in particular the autophagy system. This immunomodulation may lead to weakening and consecutively triggering death of Pacific oysters. The identification of several highly modulated and defense-related Pacific oyster proteins from the most resistant oysters supports the crucial role played by the innate immune system against OsHV-1 and the viral infection. Our results confirm the implication of proteins involved in an interferon-like pathway for efficient antiviral defenses and suggest that proteins involved in RNA interference process prevent viral replication in . Overall, this study shows the interest of multi-omic approaches applied on groups of animals with differing sensitivities and provides novel insight into the interaction between Pacific oyster and OsHV-1 with key proteins involved in viral infection resistance.

摘要

影响太平洋牡蛎()幼体/稚贝的大规模死亡疫情通常与一种名为牡蛎疱疹病毒1型(OsHV-1)的疱疹病毒的检测有关。在这项工作中,使用两个对病毒感染易感性不同的太平洋牡蛎家系对其幼体进行了OsHV-1的实验感染试验。在感染后12、26和144小时(hpi)采集活牡蛎样本,使用比较蛋白质组学分析宿主-病原体相互作用。鸟枪法蛋白质组学能够在受感染的牡蛎中检测到七种病毒蛋白,其中一些具有潜在的免疫调节功能。病毒蛋白主要在26 hpi采集的易感牡蛎中检测到,这与该牡蛎家系中观察到的死亡率和病毒载量相关。关于太平洋牡蛎蛋白质组,鉴定出了3000多种蛋白质,并且在不同注射后时间采集的受感染A系和P系牡蛎之间观察到了对比鲜明的蛋白质组反应。对显著调节的蛋白质进行的基因本体(GO)和KEGG通路富集分析揭示了有助于太平洋牡蛎抵御病毒感染的主要免疫过程(如RNA干扰、干扰素样通路、抗氧化防御)。在更易感的太平洋牡蛎中,结果表明OsHV-1操纵宿主免疫反应的分子机制,特别是自噬系统。这种免疫调节可能导致太平洋牡蛎衰弱并继而引发死亡。从最具抗性的牡蛎中鉴定出几种高度调节且与防御相关的太平洋牡蛎蛋白质,支持了先天免疫系统对OsHV-1和病毒感染所起的关键作用。我们的结果证实了参与干扰素样通路的蛋白质对有效抗病毒防御的影响,并表明参与RNA干扰过程的蛋白质可防止病毒在体内复制。总体而言,本研究显示了对具有不同敏感性的动物群体应用多组学方法的意义,并为太平洋牡蛎与OsHV-1之间的相互作用以及参与病毒感染抗性的关键蛋白质提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95e3/7848083/09de6ef44cbb/fimmu-11-621994-g001.jpg

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