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温和噬菌体ϕ20617对DSM 20617自溶及生物学特性的作用

Role of Temperate Bacteriophage ϕ20617 on DSM 20617 Autolysis and Biology.

作者信息

Arioli Stefania, Eraclio Giovanni, Della Scala Giulia, Neri Eros, Colombo Stefano, Scaloni Andrea, Fortina Maria Grazia, Mora Diego

机构信息

Department of Food Environmental and Nutritional Sciences, University of Milan, Milan, Italy.

Sacco Srl, Cadorago, Italy.

出版信息

Front Microbiol. 2018 Nov 9;9:2719. doi: 10.3389/fmicb.2018.02719. eCollection 2018.

Abstract

DSM 20167 showed autolytic behavior when cultured in lactose- and sucrose-limited conditions. The amount of cell lysis induced was inversely related to the energetic status of the cells, as demonstrated by exposing cells to membrane-uncoupling and glycolysis inhibitors. Genome sequence analysis of strain DSM 20617 revealed the presence of a -type temperate bacteriophage, designated Φ20617, whose genomic organization and structure resemble those of temperate streptococcal bacteriophages. The prophage integrated at the 3'-end of the gene encoding the glycolytic enzyme enolase (), between and the lipoteichoic acid synthase-encoding gene , affecting their transcription. Comparative experiments conducted on the wild-type strain and a phage-cured derivative strain revealed that the cell-wall integrity of the lysogenic strain was compromised even in the absence of detectable cell lysis. More importantly, adhesion to solid surfaces and heat resistance were significantly higher in the lysogenic strain than in the phage-cured derivative. The characterization of the phenotype of a lysogenic and its phage-cured derivative is relevant to understanding the ecological constraints that drive the stable association between a temperate phage and its bacterial host.

摘要

DSM 20167在乳糖和蔗糖受限条件下培养时表现出自溶行为。如通过将细胞暴露于膜解偶联剂和糖酵解抑制剂所证明的,诱导的细胞裂解量与细胞的能量状态呈负相关。菌株DSM 20617的基因组序列分析揭示了一种A型温和噬菌体的存在,命名为Φ20617,其基因组组织和结构类似于温和链球菌噬菌体。原噬菌体整合在编码糖酵解酶烯醇化酶()的基因的3'端,在和编码脂磷壁酸合酶的基因之间,影响它们的转录。对野生型菌株和噬菌体清除衍生物菌株进行的比较实验表明,即使在没有可检测到的细胞裂解的情况下,溶原性菌株的细胞壁完整性也受到损害。更重要的是,溶原性菌株对固体表面的粘附和耐热性明显高于噬菌体清除衍生物。溶原性及其噬菌体清除衍生物的表型特征与理解驱动温和噬菌体与其细菌宿主之间稳定关联的生态限制有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd8f/6237837/38d5819c2efe/fmicb-09-02719-g001.jpg

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