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Analysis of 19 Highly Conserved Vibrio cholerae Bacteriophages Isolated from Environmental and Patient Sources Over a Twelve-Year Period

机译:在十二年期间从环境和患者来源分离出的19种高度保守的霍乱弧菌噬菌体的分析

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摘要

The Vibrio cholerae biotype “El Tor” is responsible for all of the current epidemic and endemic cholera outbreaks worldwide. These outbreaks are clonal, and it is hypothesized that they originate from the coastal areas near the Bay of Bengal, where the lytic bacteriophage ICP1 (International Centre for Diarrhoeal Disease Research, Bangladesh cholera phage 1) specifically preys upon these pathogenic outbreak strains. ICP1 has also been the dominant bacteriophage found in cholera patient stools since 2001. However, little is known about the genomic differences between the ICP1 strains that have been collected over time. Here, we elucidate the pan-genome and the phylogeny of the ICP1 strains by aligning, annotating, and analyzing the genomes of 19 distinct isolates that were collected between 2001 and 2012. Our results reveal that the ICP1 isolates are highly conserved and possess a large core-genome as well as a smaller, somewhat flexible accessory-genome. Despite its overall conservation, ICP1 strains have managed to acquire a number of unknown genes, as well as a CRISPR-Cas system which is known to be critical for its ongoing struggle for co-evolutionary dominance over its host. This study describes a foundation on which to construct future molecular and bioinformatic studies of these V. cholerae-associated bacteriophages.
机译:霍乱弧菌的生物型为“ El Tor”,是造成全球目前所有流行和地方性霍乱暴发的原因。这些暴发是克隆性的,据推测它们起源于孟加拉湾附近的沿海地区,那里的溶菌噬菌体ICP1(国际腹泻病研究中心,孟加拉国霍乱噬菌体1)特别捕食这些致病性暴发菌株。自2001年以来,ICP1也是霍乱患者粪便中发现的主要噬菌体。但是,随着时间的推移,ICP1菌株之间的基因组差异还知之甚少。在这里,我们通过比对,注释和分析2001年至2012年收集的19种不同分离株的基因组,阐明了ICP1菌株的全基因组和系统发育。我们的结果表明ICP1分离株是高度保守的且具有较大的核心基因组以及更小,更灵活的辅助基因组。尽管ICP1菌株得到了全面保护,但仍设法获得了许多未知基因,以及一个CRISPR-Cas系统,该系统对其在宿主中共同进化优势的持续斗争至关重要。这项研究描述了构建这些霍乱弧菌相关噬菌体未来分子和生物信息学研究的基础。

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