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基于系统发育基因组和分子标记的研究来阐明消化链球菌属种间的进化关系。鉴定了消化链球菌属的几个属级进化枝,并将一些消化链球菌种转移到埃氏拟杆菌属。

Phylogenomic and molecular markers based studies on clarifying the evolutionary relationships among Peptoniphilus species. Identification of several Genus-Level clades of Peptoniphilus species and transfer of some Peptoniphilus species to the genus Aedoeadaptatus.

机构信息

Department of Biochemistry and Biomedical Sciences, McMaster University, Hamilton, Ontario L8N 3Z5, Canada.

Department of Biochemistry and Biomedical Sciences, McMaster University, Hamilton, Ontario L8N 3Z5, Canada.

出版信息

Syst Appl Microbiol. 2024 May;47(2-3):126499. doi: 10.1016/j.syapm.2024.126499. Epub 2024 Feb 24.

Abstract

To clarify the evolutionary relationships among Peptoniphilus species, whose members show association with increased risk for prostate cancer, detailed phylogenomic and comparative analyses were conducted on their genome sequences. In phylogenetic trees based on core genome proteins and 16S rRNA gene sequences, Peptoniphilus species formed eight distinct clades, with Aedoeadaptatus and Anaerosphaera species branching between them. The observed clades designated as Peptoniphilus sensu stricto (encompassing its type species), Harei, Lacrimalis, Duerdenii, Mikwangii, Stercorisuis, Catoniae and Aedoeadaptatus, show genus level divergence based on 16S rRNA similarity and average amino acid identity (AAI). The Genome Taxonomy Database also assigns most of these clades to distinct taxa. Several Peptoniphilus species (viz. P. coxii, P. ivorii, P. nemausensis and some non-validly published species) grouped reliably with the type species of Aedoeadaptatus (A. acetigenes) and are affiliated to this genus based on 16S rRNA similarity, AAI, and multiple uniquely shared molecular signatures. Hence, we are proposing the transfer of these species into the emended genus Aedoeadaptatus. Our analyses on protein sequences from Peptoniphilus genomes have also identified 54 novel molecular markers consisting of conserved signature indels (CSIs), which are specific for different Peptoniphilus species clades and provide reliable means for their demarcation in molecular terms. Lastly, we also show that based on the shared presence of these CSIs in the genomes of uncharacterized Peptoniphilus spp. (cultured and uncultured), their affiliations to the specific Peptoniphilus clades can be accurately predicted. These results should prove useful in understanding the potential involvement of Peptoniphilus-related species in diseases.

摘要

为了阐明与前列腺癌风险增加相关的 Peptoniphilus 物种之间的进化关系,对其基因组序列进行了详细的系统基因组学和比较分析。在基于核心基因组蛋白和 16S rRNA 基因序列的系统发育树中,Peptoniphilus 物种形成了八个不同的分支,其中 Aedoeadaptatus 和 Anaerosphaera 物种在它们之间分支。观察到的分支被指定为 Peptoniphilus sensu stricto(包括其模式种)、Harei、Lacrimalis、Duerdenii、Mikwangii、Stercorisuis、Catoniae 和 Aedoeadaptatus,根据 16S rRNA 相似性和平均氨基酸同一性 (AAI) 显示出属水平的分化。基因组分类数据库还将这些分支中的大多数分配给不同的分类单元。一些 Peptoniphilus 物种(即 P. coxii、P. ivorii、P. nemausensis 和一些未正式发表的物种)与 Aedoeadaptatus 的模式种(A. acetigenes)可靠地聚在一起,根据 16S rRNA 相似性、AAI 和多个独特共享的分子特征,它们与该属有关。因此,我们建议将这些物种转移到改良的 Aedoeadaptatus 属中。我们对 Peptoniphilus 基因组蛋白质序列的分析还确定了 54 个新的分子标记,包括保守特征插入缺失(CSIs),这些标记特异性针对不同的 Peptoniphilus 物种分支,为它们在分子水平上的划分提供了可靠的手段。最后,我们还表明,基于这些 CSI 在未表征的 Peptoniphilus spp.(培养和未培养)基因组中的共同存在,它们可以准确预测其与特定 Peptoniphilus 分支的关系。这些结果应该有助于理解 Peptoniphilus 相关物种在疾病中的潜在作用。

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