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Role of the intertidal predatory shore crab Carcinus maenas in transmission dynamics of ostreid herpesvirus-1 microvariant

机译:潮间带掠食性岸蟹Carcinus maenas在ostreid疱疹病毒1微变量传播动力学中的作用

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Ostreid herpesvirus-1 microVar (OsHV-1 ?μVar) has been responsible for significant mortalities globally in the Pacific oyster Crassostrea gigas. While the impact of this virus on the Pacific oyster has been significant, this pathogen may have wider ecosystem consequences. It has not been definitively determined how the virus is sustaining itself in the marine environment and whether other species are susceptible. The shore crab Carcinus maenas is a mobile predator and scavenger of C. gigas, commonly found at Pacific oyster culture sites. The aim of this study was to investigate the role of the crab in viral maintenance and transmission to the Pacific oyster. A field trial took place over 1 summer at different shore heights at 2 Irish Pacific oyster culture sites that are endemic for OsHV-1 ?μVar. Infection of OsHV-1 ?μVar in tissues of C. maenas at both shore heights of both sites was detected by polymerase chain reaction (PCR), quantitative PCR (qPCR), in situ hybridization and direct Sanger sequencing. In addition, a laboratory trial demonstrated that transmission of the virus could occur to na?ˉve C. gigas within 4 d, from C. maenas previously exposed to the virus in the wild. These findings provide some insight into the possibility that the virus can be transmitted through marine food webs. The results also suggest viral plasticity in the hosts required by the virus and potential impacts on a range of crustacean species with wider ecosystem impacts if transmission to other species occurs.
机译:Ostreid疱疹病毒1 microVar(OsHV-1?Var)已导致太平洋牡蛎Crassostrea gigas的全球大量死亡。尽管这种病毒对太平洋牡蛎的影响很大,但这种病原体可能对生态系统产生更大的影响。尚未确定病毒在海洋环境中如何自我维持以及其他物种是否易感。岸蟹Carcinus maenas是C. gigas的移动捕食者和清除剂,通常在太平洋牡蛎养殖场发现。这项研究的目的是调查螃蟹在病毒维持和向太平洋牡蛎传播中的作用。在超过1个夏季的1个夏天,对两个OsHV-1?μVar特有的爱尔兰太平洋牡蛎养殖场进行了田间试验。通过聚合酶链反应(PCR),定量PCR(qPCR),原位杂交和直接Sanger测序检测在两个位点的两个岸高处的美人鱼组织中OsHV-1?μVar的感染。此外,一项实验室试验表明,该病毒的传播可在4 d内从原先暴露于野外的梅氏梭菌传播至幼稚的C. gigas。这些发现为病毒可以通过海洋食物网传播的可能性提供了一些见识。研究结果还表明,病毒需要在宿主中产生病毒可塑性,并且如果传播到其他物种,则可能对一系列甲壳类物种产生潜在影响,对生态系统的影响也更大。

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