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口腔链球菌 B6 基因组——什么是共生体?

The genome of Streptococcus mitis B6--what is a commensal?

机构信息

Department of Microbiology, University of Kaiserslautern, Kaiserslautern, Germany.

出版信息

PLoS One. 2010 Feb 25;5(2):e9426. doi: 10.1371/journal.pone.0009426.

Abstract

Streptococcus mitis is the closest relative of the major human pathogen S. pneumoniae. The 2,15 Mb sequence of the Streptococcus mitis B6 chromosome, an unusually high-level beta-lactam resistant and multiple antibiotic resistant strain, has now been determined to encode 2100 genes. The accessory genome is estimated to represent over 40%, including 75 mostly novel transposases and IS, the prophage phiB6 and another seven phage related regions. Tetracycline resistance mediated by Tn5801, and an unusual and large gene cluster containing three aminoglycoside resistance determinants have not been described in other Streptococcus spp. Comparative genomic analyses including hybridization experiments on a S. mitis B6 specific microarray reveal that individual S. mitis strains are almost as distantly related to the B6 strain as S. pneumoniae. Both species share a core of over 900 genes. Most proteins described as pneumococcal virulence factors are present in S. mitis B6, but the three choline binding proteins PcpA, PspA and PspC, and three gene clusters containing the hyaluronidase gene, ply and lytA, and the capsular genes are absent in S. mitis B6 and other S. mitis as well and confirm their importance for the pathogenetic potential of S. pneumoniae. Despite the close relatedness between the two species, the S. mitis B6 genome reveals a striking X-alignment when compared with S. pneumoniae.

摘要

缓症链球菌是主要人类病原体肺炎链球菌的近亲。高度耐β-内酰胺和多种抗生素的变异链球菌 B6 染色体的 2,15 Mb 序列现已确定可编码 2100 个基因。该染色体的辅助基因组估计占 40%以上,其中包括 75 个主要新型转座酶和 IS、噬菌体 phiB6 和另外 7 个与噬菌体相关的区域。Tn5801 介导的四环素耐药性以及包含三个氨基糖苷类耐药决定因子的不寻常和大型基因簇在其他链球菌中尚未描述过。包括在 S. mitis B6 特异性微阵列上进行杂交实验的比较基因组分析表明,个别 S. mitis 菌株与 B6 菌株的亲缘关系几乎与肺炎链球菌一样远。这两个物种共享超过 900 个核心基因。大多数被描述为肺炎球菌毒力因子的蛋白质都存在于 S. mitis B6 中,但三个胆胺结合蛋白 PcpA、PspA 和 PspC,以及包含透明质酸酶基因 ply 和 lytA 以及荚膜基因的三个基因簇在 S. mitis B6 和其他 S. mitis 中都不存在,这证实了它们对肺炎链球菌致病潜力的重要性。尽管这两个物种密切相关,但与肺炎链球菌相比,S. mitis B6 基因组显示出明显的 X 型排列。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bee4/2828477/fbcd24ebfb9a/pone.0009426.g001.jpg

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