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首页> 外文期刊>Microbial Genomics >Virulence genes and previously unexplored gene clusters in four commensal Neisseria spp. isolated from the human throat expand the neisserial gene repertoire
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Virulence genes and previously unexplored gene clusters in four commensal Neisseria spp. isolated from the human throat expand the neisserial gene repertoire

机译:毒力基因和以前未探测的四个非团结菌中的基因簇。孤立的人咽喉喉咙扩展了奈赛斯基因曲目

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Commensal non-pathogenic Neisseria spp. live within the human host alongside the pathogenic Neisseria meningitidis and Neisseria gonorrhoeae and due to natural competence, horizontal gene transfer within the genus is possible and has been observed. Four distinct Neisseria spp. isolates taken from the throats of two human volunteers have been assessed here using a combination of microbiological and bioinformatics techniques. Three of the isolates have been identified as Neisseria subflava biovar perflava and one as Neisseria cinerea . Specific gene clusters have been identified within these commensal isolate genome sequences that are believed to encode a Type VI Secretion System, a newly identified CRISPR system, a Type IV Secretion System unlike that in other Neisseria spp., a hemin transporter, and a haem acquisition and utilization system. This investigation is the first to investigate these systems in either the non-pathogenic or pathogenic Neisseria spp. In addition, the N. subflava biovar perflava possess previously unreported capsule loci and sequences have been identified in all four isolates that are similar to genes seen within the pathogens that are associated with virulence. These data from the four commensal isolates provide further evidence for a Neisseria spp. gene pool and highlight the presence of systems within the commensals with functions still to be explored.
机译:非致病性Neisseria SPP。生活在人体宿主中,伴随着致病性奈瑟奈瑟脑炎和Neisseria淋病术,并且由于自然能力,可能在属中进行水平基因转移并且已经观察到。四个不同的neisseria spp。这里已经使用微生物和生物信息学技术的组合评估了从两个人志愿者的喉咙中取出的分离物。其中三种分离株已被鉴定为Neisseria subflava Biovar Perflava和作为Neisseria Cinerea。已经在这些共同分离的基因组序列中鉴定了特异性基因簇,该序列被认为是一种新鉴定的CRISPR系统,一种不同于其他Neisseria SPP的IV分泌系统。,血红素转运蛋白和寄存和利用系统。本研究是第一个在非致病或病原体遗传症SPP中研究这些系统的研究。此外,在所有四个分离株中鉴定出具有先前未报告的胶囊基因座和序列的N. subflava Biovar Pervava。类似于与毒力相关的病原体内所见的基因。来自四个共同分离液的这些数据为Neisseria SPP提供了进一步的证据。基因池并突出显示在共同内的系统存在,仍有仍有待探索的功能。

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