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病毒性出血败血症病毒引入淡水养殖虹鳟鱼后会经历爆发性的适应性进化。

Introduction of Viral Hemorrhagic Septicemia Virus into Freshwater Cultured Rainbow Trout Is Followed by Bursts of Adaptive Evolution.

机构信息

Center for Quantitative Genetics and Genomics, Department of Molecular Biology and Genetics, Aarhus University, Aarhus, Denmark

Qiagen-Aarhus, Aarhus, Denmark.

出版信息

J Virol. 2018 May 29;92(12). doi: 10.1128/JVI.00436-18. Print 2018 Jun 15.

Abstract

(VHSV), a rhabdovirus infecting teleost fish, has repeatedly crossed the boundary from marine fish species to freshwater cultured rainbow trout. These naturally replicated cross-species transmission events permit the study of general and repeatable evolutionary events occurring in connection with viral emergence in a novel host species. The purpose of the present study was to investigate the adaptive molecular evolution of the VHSV glycoprotein, one of the key virus proteins involved in viral emergence, following emergence from marine species into freshwater cultured rainbow trout. A comprehensive phylogenetic reconstruction of the complete coding region of the VHSV glycoprotein was conducted, and adaptive molecular evolution was investigated using a maximum likelihood approach to compare different codon substitution models allowing for heterogeneous substitution rate ratios among amino acid sites. Evidence of positive selection was detected at six amino acid sites of the VHSV glycoprotein, within the signal peptide, the confirmation-dependent major neutralizing epitope, and the intracellular tail. Evidence of positive selection was found exclusively in rainbow trout-adapted virus isolates, and amino acid combinations found at the six sites under positive selection pressure differentiated rainbow trout- from non-rainbow trout-adapted isolates. Furthermore, four adaptive sites revealed signs of recurring identical changes across phylogenetic groups of rainbow trout-adapted isolates, suggesting that repeated VHSV emergence in freshwater cultured rainbow trout was established through convergent routes of evolution that are associated with immune escape. This study is the first to demonstrate that VHSV emergence from marine species into freshwater cultured rainbow trout has been accompanied by bursts of adaptive evolution in the VHSV glycoprotein. Furthermore, repeated detection of the same adaptive amino acid sites across phylogenetic groups of rainbow trout-adapted isolates indicates that adaptation to rainbow trout was established through parallel evolution. In addition, signals of convergent evolution toward the maintenance of genetic variation were detected in the conformation-dependent neutralizing epitope or in close proximity to disulfide bonds involved in the structural conformation of the neutralizing epitope, indicating adaptation to immune response-related genetic variation across freshwater cultured rainbow trout.

摘要

(VHSV)是一种感染硬骨鱼的弹状病毒,已多次跨越从海洋鱼类到淡水养殖虹鳟鱼的物种界限。这些自然复制的跨物种传播事件允许研究在新宿主物种中病毒出现时发生的普遍和可重复的进化事件。本研究的目的是调查 VHSV 糖蛋白的适应性分子进化,VHSV 糖蛋白是参与病毒出现的关键病毒蛋白之一,在从海洋物种出现到淡水养殖虹鳟鱼之后。对 VHSV 糖蛋白的完整编码区进行了全面的系统发育重建,并使用最大似然法对适应性分子进化进行了研究,以比较允许氨基酸位点之间异质替代率的不同密码子替代模型。在 VHSV 糖蛋白的六个氨基酸位点检测到正选择的证据,位于信号肽、基于确认的主要中和表位和细胞内尾部。在虹鳟鱼适应的病毒分离株中仅发现正选择的证据,并且在正选择压力下在六个位点发现的氨基酸组合将虹鳟鱼与非虹鳟鱼适应的分离株区分开来。此外,四个适应性位点显示出在虹鳟鱼适应的分离株的系统发育群中重复相同变化的迹象,表明在淡水养殖虹鳟鱼中 VHSV 的反复出现是通过与免疫逃避相关的进化趋同途径建立的。这项研究首次表明,VHSV 从海洋物种到淡水养殖虹鳟鱼的出现伴随着 VHSV 糖蛋白适应性进化的爆发。此外,在虹鳟鱼适应的分离株的系统发育群中反复检测到相同的适应性氨基酸位点表明,对虹鳟鱼的适应是通过平行进化建立的。此外,在构象依赖性中和表位或靠近参与中和表位结构构象的二硫键附近,检测到向维持遗传变异的趋同进化信号,表明在淡水养殖虹鳟鱼中适应与免疫反应相关的遗传变异。

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