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Genomic analysis reveals low genetic diversity and no continuous reintroduction of piscine myocarditis virus in farmed Atlantic salmon in the Faroe Islands.基因组分析显示,法罗群岛养殖的大西洋鲑遗传多样性较低,且未出现鱼心肌炎病毒的持续再引入情况。
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2
Unraveling the genomic landscape of piscine myocarditis virus: mutation frequencies, viral diversity and evolutionary dynamics in Atlantic salmon.解析大西洋鲑鱼中鱼类心肌炎病毒的基因组格局:突变频率、病毒多样性及进化动态
Virus Evol. 2024 Nov 21;10(1):veae097. doi: 10.1093/ve/veae097. eCollection 2024.
3
Immunological characteristics govern the transition of COVID-19 to endemicity.免疫特性决定了 COVID-19 向地方病的转变。
Science. 2021 Feb 12;371(6530):741-745. doi: 10.1126/science.abe6522. Epub 2021 Jan 12.
4
Rapid Diagnostics of Orthopaedic-Implant-Associated Infections Using Nanopore Shotgun Metagenomic Sequencing on Tissue Biopsies.使用纳米孔鸟枪法宏基因组测序对组织活检样本进行骨科植入物相关感染的快速诊断
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Virus Genes. 2020 Dec;56(6):767-771. doi: 10.1007/s11262-020-01795-9. Epub 2020 Oct 9.
9
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比较基因组测序方法以重建爱尔兰鱼类心肌炎病毒的传播情况。

Comparing Genome Sequencing Methods to Reconstruct the Spread of Piscine Myocarditis Virus in Ireland.

作者信息

Tighe Andrew J, Carlsson Jens, Ruane Neil M

机构信息

Marine Institute, Oranmore, Co. Galway, Ireland.

Area 52 Research Group, School of Biology and Environmental Science/Earth Institute, University College Dublin, Dublin 4, Ireland.

出版信息

J Fish Dis. 2025 Nov;48(11):e14150. doi: 10.1111/jfd.14150. Epub 2025 May 26.

DOI:10.1111/jfd.14150
PMID:40420515
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12489434/
Abstract

Piscine myocarditis virus (PMCV), a double-stranded RNA virus, is the causative agent of cardiomyopathy syndrome (CMS) in Atlantic salmon Salmo salar, which was first reported in Ireland in 2012. PMCV continues to be a disease threat to Atlantic salmon aquaculture in Ireland, and as such, it is of growing importance to understand how the virus spreads. Genetic sequences allow for transmission pathways to be examined, with whole genomes providing the most accurate information. In this study, whole genome sequencing has been applied to Irish strains of PMCV, in doing so revealing how > 80% of the genetic diversity of the virus lies outside the commonly sequenced open reading frames (ORFs). Second, this paper examines the effectiveness of incorporating a MinION sequencing approach into routine diagnostics by comparing a MinION generated genome to the corresponding sequence generated via Illumina MiSeq. The results showed the MinION genome shared 99.59% identity with the Illumina genome, and while this accuracy may be sufficient for studies such as pathogen identification and deeper evolutionary questions, it was shown to be insufficient for accurately tracking viral transmission pathways. Finally, comparing Irish and Faroese sequences reveals that some strains of PMCV in Ireland may originate from wild fish.

摘要

鲤心肌炎病毒(PMCV)是一种双链RNA病毒,是大西洋鲑鱼心肌病综合征(CMS)的病原体,该病毒于2012年在爱尔兰首次被报道。PMCV仍然是爱尔兰大西洋鲑鱼养殖的一种疾病威胁,因此,了解该病毒的传播方式变得越来越重要。基因序列有助于研究病毒的传播途径,全基因组能提供最准确的信息。在本研究中,全基因组测序已应用于爱尔兰的PMCV毒株,这样做揭示了该病毒超过80%的遗传多样性存在于通常测序的开放阅读框(ORF)之外。其次,本文通过比较MinION测序生成的基因组与通过Illumina MiSeq生成的相应序列,研究了将MinION测序方法纳入常规诊断的有效性。结果显示,MinION基因组与Illumina基因组的序列一致性为99.59%,虽然这种准确性对于病原体鉴定和深入进化问题等研究可能足够,但对于准确追踪病毒传播途径来说是不够的。最后,比较爱尔兰和法罗群岛的序列发现,爱尔兰的一些PMCV毒株可能源自野生鱼类。