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首页> 外文期刊>BMC Genomics >Genomic characterization provides new insight into Salmonella phage diversity
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Genomic characterization provides new insight into Salmonella phage diversity

机译:基因组表征为沙门氏菌噬菌体多样性提供了新见解

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摘要

Background Salmonella is a widely distributed foodborne pathogen that causes tens of millions of salmonellosis cases globally every year. While the genomic diversity of Salmonella is increasingly well studied, our knowledge of Salmonella phage genomic diversity is still rather limited, despite the contributions of both lysogenic and lytic phages to Salmonella virulence, diversity and ecology (e.g., through horizontal gene transfer and Salmonella lysis). To gain a better understanding of phage diversity in a specific ecological niche, we sequenced 22 Salmonella phages isolated from a number of dairy farms from New York State (United States) and analyzed them using a comparative genomics approach. Results Classification of the 22 phages according to the presence/absence of orthologous genes allowed for classification into 8 well supported clusters. In addition to two phage clusters that represent novel virulent Salmonella phages, we also identified four phage clusters that each contained previously characterized phages from multiple continents. Our analyses also identified two clusters of phages that carry putative virulence (e.g., adhesins) and antimicrobial resistance (tellurite and bicyclomycin) genes as well as virulent and temperate transducing phages. Insights into phage evolution from our analyses include (i) identification of DNA metabolism genes that may facilitate nucleotide synthesis in phages with a G+C % distinct from Salmonella, and (ii) evidence of Salmonella phage tailspike and fiber diversity due to both single nucleotide polymorphisms and major re-arrangements, which may affect the host specificity of Salmonella phages. Conclusions Genomics-based characterization of 22 Salmonella phages isolated from dairy farms allowed for identification of a number of novel Salmonella phages. While the comparative genomics analyses of these phages provide a number of new insights in the evolution and diversity of Salmonella phages, they only represent a first glimpse into the diversity of Salmonella phages that is likely to be discovered when phages from different environments are characterized.
机译:背景沙门氏菌是一种分布广泛的食源性病原体,每年在全球范围内引起数千万例沙门氏菌病病例。尽管沙门氏菌的基因组多样性已得到越来越多的研究,但尽管溶原性和裂解性噬菌体对沙门氏菌的毒力,多样性和生态都做出了贡献(例如,通过水平基因转移和沙门氏菌裂解),但我们对沙门氏菌噬菌体基因组多样性的知识仍然相当有限。 。为了更好地了解特定生态位中的噬菌体多样性,我们对从纽约州(美国)多个奶牛场分离的22种沙门氏菌噬菌体进行了测序,并使用比较基因组学方法对其进行了分析。结果根据直向同源基因的存在/不存在对22个噬菌体进行分类,从而可以将其分类为8个支持良好的簇。除了代表新的强毒沙门氏菌噬菌体的两个噬菌体簇,我们还鉴定了四个噬菌体簇,每个噬菌体簇都包含先前来自多大洲的特征性噬菌体。我们的分析还确定了两类噬菌体,它们携带推定的毒力(例如黏附素)和抗菌素耐药性(碲铁矿和双环霉素)基因以及有毒和温带的噬菌体。通过我们的分析对噬菌体进化的见解包括:(i)鉴定可能有助于噬菌体中核苷酸合成的DNA代谢基因,其G + C%与沙门氏菌不同,以及(ii)沙门氏菌噬菌体尾钉和纤维多样性的证据,这是由于单核苷酸多态性和主要的重排,可能影响沙门氏菌噬菌体的宿主特异性。结论从奶牛场分离的22种沙门氏菌噬菌体的基于基因组学的表征可以鉴定许多新型沙门氏菌噬菌体。尽管这些噬菌体的比较基因组学分析为沙门氏菌噬菌体的进化和多样性提供了许多新见解,但它们仅代表沙门氏菌噬菌体的多样性的初步发现,而沙门氏菌噬菌体的特性可能是在表征不同环境的噬菌体时发现的。

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