首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Bacteriophage ϕMAM1 a Viunalikevirus Is a Broad-Host-Range High-Efficiency Generalized Transducer That Infects Environmental and Clinical Isolates of the Enterobacterial Genera Serratia and Kluyvera
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Bacteriophage ϕMAM1 a Viunalikevirus Is a Broad-Host-Range High-Efficiency Generalized Transducer That Infects Environmental and Clinical Isolates of the Enterobacterial Genera Serratia and Kluyvera

机译:噬菌体ϕMAM1一种Viunalike病毒是一种广泛宿主高效的通用转导子可感染沙雷氏菌和克鲁维拉属的环境和临床隔离株

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摘要

Members of the enterobacterial genus Serratia are ecologically widespread, and some strains are opportunistic human pathogens. Bacteriophage ϕMAM1 was isolated on Serratia plymuthica A153, a biocontrol rhizosphere strain that produces the potently bioactive antifungal and anticancer haterumalide oocydin A. The ϕMAM1 phage is a generalized transducing phage that infects multiple environmental and clinical isolates of Serratia spp. and a rhizosphere strain of Kluyvera cryocrescens. Electron microscopy allowed classification of ϕMAM1 in the family Myoviridae. Bacteriophage ϕMAM1 is virulent, uses capsular polysaccharides as a receptor, and can transduce chromosomal markers at frequencies of up to 7 × 10−6 transductants per PFU. We also demonstrated transduction of the complete 77-kb oocydin A gene cluster and heterogeneric transduction of a plasmid carrying a type III toxin-antitoxin system. These results support the notion of the potential ecological importance of transducing phages in the acquisition of genes by horizontal gene transfer. Phylogenetic analyses grouped ϕMAM1 within the ViI-like bacteriophages, and genomic analyses revealed that the major differences between ϕMAM1 and other ViI-like phages arise in a region encoding the host recognition determinants. Our results predict that the wider genus of ViI-like phages could be efficient transducing phages, and this possibility has obvious implications for the ecology of horizontal gene transfer, bacterial functional genomics, and synthetic biology.
机译:肠杆菌属沙雷氏菌属的成员在生态学上很普遍,有些菌株是机会性人类病原体。噬菌体ϕMAM1是在沙雷氏菌S153上分离的,沙门氏菌是生物控制的根际菌株,可产生有效的生物活性抗真菌和抗癌的合气菌内毒素oocydinA。和Kluyvera cryocrescens的根际菌株。电子显微镜可以将肌病毒科的ϕMAM1分类。噬菌体ϕMAM1具有高毒力,以荚膜多糖为受体,可以以每个PFU最高7×10 −6 转导子的频率转导染色体标记。我们还证明了完整的77-kb卵磷脂A基因簇的转导和携带III型毒素-抗毒素系统的质粒的异源转导。这些结果支持了在通过水平基因转移获得基因中转导噬菌体的潜在生态重要性的观念。系统发育分析将ϕMAM1分组在ViI样噬菌体中,基因组分析显示revealedMAM1与其他ViI样噬菌体之间的主要差异出现在编码宿主识别决定簇的区域。我们的结果预测,更宽泛的ViI样噬菌体可以有效地转导噬菌体,这种可能性对水平基因转移的生态学,细菌功能基因组学和合成生物学具有明显的意义。

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