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Dynamics of the Pacific oyster pathobiota during mortality episodes in Europe assessed by 16S rRNA gene profiling and a new target enrichment next-generation sequencing strategy

机译:16S RRNA基因分析和新的目标富集下一代测序策略评估了欧洲死亡剧发作期间太平洋牡蛎病理群的动态

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Infectious agents such as the bacteria Vibrio aestuarianus or Ostreid herpesvirus 1 have been repeatedly associated with dramatic disease outbreaks of Crassostrea gigas beds in Europe. Beside roles played by these pathogens, microbial infections in C. gigas may derive from the contribution of a larger number of microorganisms than previously thought, according to an emerging view supporting the polymicrobial nature of bivalve diseases. In this study, the microbial communities associated with a large number of C. gigas samples collected during recurrent mortality episodes at different European sites were investigated by real-time PCR and 16SrRNA gene-based microbial profiling. A new target enrichment next-generation sequencing protocol for selective capturing of 884 phylogenetic and virulence markers of the potential microbial pathogenic community in oyster tissue was developed allowing high taxonomic resolution analysis of the bivalve pathobiota. Comparative analysis of contrasting C. gigas samples conducted using these methods revealed that oyster experiencing mortality outbreaks displayed signs of microbiota disruption associated with the presence of previously undetected potential pathogenic microbial species mostly belonging to genus Vibrio and Arcobacter. The role of these species and their consortia should be targeted by future studies aiming to shed light on mechanisms underlying polymicrobial infections in C. gigas.
机译:感染者,如细菌颤族,奥斯特因患者或鸵鸟疱疹病毒1已反复与欧洲鲫鱼床的戏剧性疾病爆发有关。根据这些病原体发挥的角色,根据支持双血管疾病的多种状体性质的新兴视图,C. Gigas的微生物感染可能导出比以前认为更大数量的微生物的贡献。在该研究中,通过实时PCR和16SRRNA基因的微生物分析研究了与在不同欧洲遗址的经常性死亡率发作期间收集的大量C.吉可酵母样本相关的微生物社区。开发了一种新的靶向捕获的下一代测序方案,用于选择性捕获884个系统发育和毒力标记的oyster组织中的潜在微生物致病群体的毒力标志物,允许高分分类的分类分析分析Pathobiota。使用这些方法进行对比度C. Gigas样品的比较分析表明,牡蛎经历死亡率爆发的迹象显示了与先前未被发现的潜在致病微生物物种的存在相关的微生物群破坏的迹象。这些物种及其联盟的作用应通过未来的研究来瞄准旨在揭示C. Gigas潜在的多发性细胞感染的机制的阐明。

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