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Recombination and microdiversity in coastal marine cyanophages

机译:沿海海洋蓝藻的重组和微生物多样性

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Genetic exchange is an important process in bacteriophage evolution. Here, we examine the role of homologous recombination in the divergence of closely related cyanophage isolates from natural marine populations. Four core-viral genes (coliphage T4 homologues g20, g23, g43 and a putative tail fibre gene) and four viral-encoded bacterial-derived genes (psbA, psbD, cobS and phoH) were analysed for 60 cyanophage isolates belonging to five Rhode Island Myovirus (RIM) strains. Phylogenetic analysis of the 60 concatenated sequences revealed well-resolved sequence clusters corresponding to the RIM strain designations. Viral isolates within a strain shared an average nucleotide identity of 99.3-99.8%. Nevertheless, extensive microdiversity was observed within each cyanophage strain; only three of the 60 isolates shared the same nucleotide haplotype. Microdiversity was generated by point mutations, homologous recombination within a strain, and intragenic recombination between RIM strains. Intragenic recombination events between distinct RIM strains were detected most often in host-derived photosystem II psbA and psbD genes, but were also identified in some major capsid protein g23 genes. Within a strain, more variability was observed at the psbA locus than at any of the other seven loci. Although most of the microdiversity within a strain was neutral, some amino acid substitutions were identified, and thus microdiversity within strains has the potential to influence the population dynamics of viral-host interactions.
机译:遗传交换是噬菌体进化的重要过程。在这里,我们检查了同源重组在从自然海洋种群中分离密切相关的氰基化噬菌体的作用。分析了四个核心病毒基因(鹅毛T4同源物g20,g23,g43和推定的尾纤维基因)和四个病毒编码的细菌衍生基因(psbA,psbD,cobS和phoH)分析了属于五个罗德岛的60个噬菌体分离物肌病毒(RIM)株。对60个串联序列的系统进化分析表明,与RIM菌株名称相对应的序列簇得到很好的解析。菌株中的病毒分离物具有99.3-99.8%的平均核苷酸同一性。然而,在每个蓝藻菌株中都观察到了广泛的微生物多样性。 60个分离株中只有3个具有相同的核苷酸单倍型。微多样性是由点突变,菌株内的同源重组以及RIM菌株之间的基因内重组产生的。在宿主衍生的光系统II psbA和psbD基因中,最常检测到不同RIM菌株之间的基因内重组事件,但在一些主要的衣壳蛋白g23基因中也发现了重组事件。在一个菌株中,与其他七个基因座相比,在psbA基因座上观察到更大的变异性。尽管菌株内的大多数微生物多样性是中性的,但已鉴定出一些氨基酸取代,因此菌株内的微生物多样性有可能影响病毒-宿主相互作用的种群动态。

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