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全球鱼类病原体鲑鱼鱼立克次氏体通过遗传隔离和转座爆发不断多样化。

Ongoing diversification of the global fish pathogen Piscirickettsia salmonis through genetic isolation and transposition bursts.

机构信息

Leibniz Institute DSMZ-German Collection of Microorganisms and Cell Cultures, Braunschweig, Germany.

Laboratorio de Genética e Inmunología Molecular, Instituto de Biología, Pontificia Universidad Católica de Valparaíso, Valparaíso, Chile.

出版信息

ISME J. 2023 Dec;17(12):2247-2258. doi: 10.1038/s41396-023-01531-9. Epub 2023 Oct 18.

Abstract

The management of bacterial pathogens remains a key challenge of aquaculture. The marine gammaproteobacterium Piscirickettsia salmonis is the etiological agent of piscirickettsiosis and causes multi-systemic infections in different salmon species, resulting in considerable mortality and substantial commercial losses. Here, we elucidate its global diversity, evolution, and selection during human interventions. Our comprehensive analysis of 73 closed, high quality genome sequences covered strains from major outbreaks and was supplemented by an analysis of all P. salmonis 16S rRNA gene sequences and metagenomic reads available in public databases. Genome comparison showed that Piscirickettsia comprises at least three distinct, genetically isolated species of which two showed evidence for continuing speciation. However, at least twice the number of species exist in marine fish or seawater. A hallmark of Piscirickettsia diversification is the unprecedented amount and diversity of transposases which are particularly active in subgroups undergoing rapid speciation and are key to the acquisition of novel genes and to pseudogenization. Several group-specific genes are involved in surface antigen synthesis and may explain the differences in virulence between strains. However, the frequent failure of antibiotic treatment of piscirickettsiosis outbreaks cannot be explained by horizontal acquisition of resistance genes which so far occurred only very rarely. Besides revealing a dynamic diversification of an important pathogen, our study also provides the data for improving its surveillance, predicting the emergence of novel lineages, and adapting aquaculture management, and thereby contributes towards the sustainability of salmon farming.

摘要

鱼类病原菌的管理仍然是水产养殖的一个主要挑战。海洋γ-变形杆菌鲑鱼鱼立克次体是鱼立克次体病的病原体,可引起不同鲑鱼品种的全身性感染,导致大量死亡和巨大的商业损失。在这里,我们阐明了其在人类干预下的全球多样性、进化和选择。我们对 73 个封闭的高质量基因组序列进行了全面分析,涵盖了主要暴发的菌株,并通过对所有在公共数据库中可用的鲑鱼鱼立克次体 16S rRNA 基因序列和宏基因组读长进行分析进行了补充。基因组比较表明,鱼立克次体至少由三个截然不同的、遗传上隔离的种组成,其中两种种显示出继续分化的证据。然而,在海洋鱼类或海水中存在的种至少是这个数量的两倍。鱼立克次体多样化的一个标志是转座酶的数量和多样性空前增加,这些转座酶在经历快速分化的亚群中特别活跃,是获得新基因和假基因化的关键。几个组特异性基因参与表面抗原的合成,这可能解释了菌株之间毒力的差异。然而,鱼立克次体病暴发的抗生素治疗频繁失败不能用水平获得抗性基因来解释,到目前为止,这种情况非常罕见。除了揭示一个重要病原体的动态多样化外,我们的研究还为改善其监测、预测新谱系的出现以及调整水产养殖管理提供了数据,从而有助于鲑鱼养殖的可持续性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5d6/10689435/e2361e59ac00/41396_2023_1531_Fig1_HTML.jpg

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