引起鱼类传染病的细菌的比较病理基因组学。

Ponnerassery S Sudheesh, Aliya Al-Ghabshi, Nashwa Al-Mazrooei, Saoud Al-Habsi
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引用次数: 117

摘要

生活在野外以及在水产养殖设施中饲养的鱼类容易感染由系统发育上不同的细菌病原体引起的传染病。使用疫苗和药物的控制和治疗方案要么不充分、效率低下,要么不切实际。研究鱼类细菌病原体的经典方法一直是研究单个或少数毒力因素。最近,许多鱼类细菌病原体的基因组测序极大地增加了我们对这些重要病原体的生物学、宿主适应和毒力因素的理解。本文试图对迄今为止已发表的有关鱼类致病菌基因组序列信息的零散文献进行整理。基因组测序揭示了鱼类病原体中由水平基因转移、插入序列元件、突变和前噬菌体序列介导的几种复杂的适应性进化策略,以及它们的基因组如何从一般的环境菌株进化为高毒力的强制性病原体。此外,比较基因组学已经允许鉴定独特的病原体特异性基因簇。本文对鱼类重要病原菌的病毒基因组及其对不同生态位进化适应的相关基因进行了比较分析。本文还提出了在鱼类致病菌基因组中寻找新的疫苗和化疗靶点的新方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Comparative pathogenomics of bacteria causing infectious diseases in fish.

Comparative pathogenomics of bacteria causing infectious diseases in fish.

Fish living in the wild as well as reared in the aquaculture facilities are susceptible to infectious diseases caused by a phylogenetically diverse collection of bacterial pathogens. Control and treatment options using vaccines and drugs are either inadequate, inefficient, or impracticable. The classical approach in studying fish bacterial pathogens has been looking at individual or few virulence factors. Recently, genome sequencing of a number of bacterial fish pathogens has tremendously increased our understanding of the biology, host adaptation, and virulence factors of these important pathogens. This paper attempts to compile the scattered literature on genome sequence information of fish pathogenic bacteria published and available to date. The genome sequencing has uncovered several complex adaptive evolutionary strategies mediated by horizontal gene transfer, insertion sequence elements, mutations and prophage sequences operating in fish pathogens, and how their genomes evolved from generalist environmental strains to highly virulent obligatory pathogens. In addition, the comparative genomics has allowed the identification of unique pathogen-specific gene clusters. The paper focuses on the comparative analysis of the virulogenomes of important fish bacterial pathogens, and the genes involved in their evolutionary adaptation to different ecological niches. The paper also proposes some new directions on finding novel vaccine and chemotherapeutic targets in the genomes of bacterial pathogens of fish.

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