三种重要的黑色牙周病原体的进化和泛基因组分析。

Pei Qi Meng, Qian Zhang, Yun Ding, Jiu Xiang Lin, Feng Chen
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引用次数: 0

摘要

目的:分析牙龈卟啉单胞菌、中普雷沃氏菌和黑化普雷沃氏菌3种黑色牙周病原菌的泛基因组。方法:采用Pan-genome Analysis Pipeline软件(1.2.1版;中国科学院北京基因组研究所,北京,中国)。基于整个泛基因组和核心基因组内的单核苷酸多态性构建系统发育树。并比较了核心基因组和必要基因组中毒力基因的分布和丰度。结果:三种物种均具有开放的泛基因组。牙龈假根、中间假根和黑根假根核心基因组分别包含1001个、1514个和1745个同源基团,主要与代谢等基本细胞功能相关。牙龈假单胞菌(P. gingivalis)、中间假单胞菌(P. intermedium)和黑黑假单胞菌(P. nigrescens)的可配基因组分别由2814个、2689个和906个同源基团组成,其中富含与致病性相关或功能未知的基因。系统进化树显示了牙龈P.、中间P.和黑皮P.的明显分离,验证了黑色素物种的重新分类。此外,这三个物种在粘附、蛋白水解和逃避宿主防御方面具有几乎相同的毒力因子。其中一些毒力基因在物种间是保守的,而另一些毒力基因属于可有可无的基因组,可能是通过水平基因转移获得的。结论:本研究强调了泛基因组分析对推断黑色色素物种进化线索的有效性,表明了它们的同源性和系统基因组多样性。
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Evolutionary and Pan-genome Analysis of Three Important Black-pigmented Periodontal Pathogens.

Objective: To analyse the pan-genome of three black-pigmented periodontal pathogens: Porphyromonas gingivalis, Prevotella intermedia and Prevotella nigrescens.

Methods: Pan-genome analyses of 66, 33 and 5 publicly available whole-genome sequences of P. gingivalis, P. intermedia and P. nigrescens, respectively, were performed using Pan-genome Analysis Pipeline software (version 1.2.1; Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing, PR China). Phylogenetic trees were constructed based on the entire pan-genome and single nucleotide polymorphisms within the core genome. The distribution and abundance of virulence genes in the core and dispensable genomes were also compared in the three species.

Results: All three species possess an open pan-genome. The core genome of P. gingivalis, P. intermedia and P. nigrescens included 1001, 1514 and 1745 orthologous groups, respectively, which were mainly related to basic cellular functions such as metabolism. The dispensable genome of P. gingivalis, P. intermedia and P. nigrescens was composed of 2814, 2689 and 906 orthologous groups, respectively, and it was enriched in genes involved in pathogenicity or with unknown functions. Phylogenetic trees presented a clear separation of P. gingivalis, P. intermedia and P. nigrescens, verifying the reclassification of the black-pigmented species. Furthermore, the three species shared almost the same virulence factors involved in adhesion, proteolysis and evasion of host defences. Some of these virulence genes were conserved across species whereas others belonged to the dispensable genome, which might be acquired through horizontal gene transfer.

Conclusion: This study highlighted the usefulness of pan-genome analysis to infer evolutionary cues for black-pigmented species, indicating their homology and phylogenomic diversity.

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