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Global survey and genome exploration of bacteriophages infecting the lactic acid bacterium Streptococcus thermophilus

机译:感染嗜热链球菌的噬菌体的全球调查和基因组探索

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摘要

Despite the persistent and costly problem caused by (bacterio)phage predation of Streptococcus thermophilus in dairy plants, DNA sequence information relating to these phages remains limited. Genome sequencing is necessary to better understand the diversity and proliferative strategies of virulent phages. In this report, whole genome sequences of 40 distinct bacteriophages infecting S. thermophilus were analyzed for general characteristics, genomic structure and novel features. The bacteriophage genomes display a high degree of conservation within defined groupings, particularly across the structural modules. Supporting this observation, four novel members of a recently discovered third group of S. thermophilus phages (termed the 5093 group) were found to be conserved relative to both phage 5093 and to each other. Replication modules of S. thermophilus phages generally fall within two main groups, while such phage genomes typically encode one putative transcriptional regulator. Such features are indicative of widespread functional synteny across genetically distinct phage groups. Phage genomes also display nucleotide divergence between groups, and between individual phages of the same group (within replication modules and at the 3′ end of the lysis module)—through various insertions and/or deletions. A previously described multiplex PCR phage detection system was updated to reflect current knowledge on S. thermophilus phages. Furthermore, the structural protein complement as well as the antireceptor (responsible for the initial attachment of the phage to the host cell) of a representative of the 5093 group was defined. Our data more than triples the currently available genomic information on S. thermophilus phages, being of significant value to the dairy industry, where genetic knowledge of lytic phages is crucial for phage detection and monitoring purposes. In particular, the updated PCR detection methodology for S. thermophilus phages is highly useful in monitoring particular phage group(s) present in a given whey sample. Studies of this nature therefore not only provide information on the prevalence and associated threat of known S. thermophilus phages, but may also uncover newly emerging and genomically distinct phages infecting this dairy starter bacterium.
机译:尽管在乳品植物中嗜热链球菌的(细菌)噬菌体捕食引起了持久且昂贵的问题,但是与这些噬菌体有关的DNA序列信息仍然有限。基因组测序对于更好地了解有毒噬菌体的多样性和增殖策略是必要的。在本报告中,分析了感染嗜热链球菌的40种不同噬菌体的全基因组序列的一般特征,基因组结构和新颖特征。噬菌体基因组在确定的组内,特别是在结构模块之间,显示出高度的保守性。支持该观察,发现相对于噬菌体5093和彼此而言,最近发现的第三组嗜热链球菌噬菌体的四个新成员(称为5093组)是保守的。嗜热链球菌噬菌体的复制模块通常分为两个主要组,而这类噬菌体基因组通常编码一个推定的转录调节子。这样的特征表明在遗传上不同的噬菌体组中广泛的功能同构。噬菌体基因组还通过各种插入和/或缺失,在组之间以及同一组的单个噬菌体之间(在复制模块内和裂解模块的3'端)显示核苷酸差异。更新了先前描述的多重PCR噬菌体检测系统,以反映嗜热链球菌噬菌体的当前知识。此外,定义了5093基团代表的结构蛋白补体以及抗受体(负责将噬菌体最初附着于宿主细胞)。我们的数据是嗜热链球菌噬菌体目前可获得的基因组信息的三倍以上,这对乳制品业具有重要价值,因为溶菌噬菌体的遗传知识对于噬菌体的检测和监测至关重要。特别地,用于嗜热链球菌噬菌体的更新的PCR检测方法学在监测给定乳清样品中存在的特定噬菌体组中非常有用。因此,这种性质的研究不仅提供了有关已知嗜热链球菌噬菌体的患病率和相关威胁的信息,而且还可能发现感染这种乳品发酵剂细菌的新出现的和基因组学上不同的噬菌体。

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