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光滑棒状杆菌 PE 和 PE_PGRS 基因的进化:重组和正选择印记的突出作用证据。

Evolution of smooth tubercle Bacilli PE and PE_PGRS genes: evidence for a prominent role of recombination and imprint of positive selection.

机构信息

Unit of Typing and Genetics of Mycobacteria, Laboratory of Molecular Microbiology, Vaccinology, and Biotechnology Development, Institut Pasteur de Tunis, Tunis, Tunisia.

出版信息

PLoS One. 2013 May 21;8(5):e64718. doi: 10.1371/journal.pone.0064718. Print 2013.

Abstract

BACKGROUND

PE and PE_PGRS are two mycobateria-restricted multigene families encoding membrane associated and secreted proteins that have expanded mainly in the pathogenic species, notably the Mycobacterium tuberculosis complex (MTBC). Several lines of evidence attribute to PE and PE_PGRS genes critical roles in mycobacterial pathogenicity. To get more insight into the nature of these genes, we sought to address their evolutionary trajectories in the group of smooth tubercle bacilli (STB), the putative ancestor of the clonal MTBC.

METHODOLOGY/PRINCIPAL FINDINGS: By focussing on six polymorphic STB PE/PE_PGRS genes, we demonstrate significant incongruence among single gene genealogies and detect strong signals of recombination using various approaches. Coalescent-based estimation of population recombination and mutation rates (ρ and θ, respectively) indicates that the two mechanisms are of roughly equal importance in generating diversity (ρ/θ = 1.457), a finding in a marked contrast to house keeping genes (HKG) whose evolution is chiefly brought about by mutation (ρ/θ = 0.012). In comparison to HKG, we found 15 times higher mean rate of nonsynonymous substitutions, with strong evidence of positive selection acting on PE_PGRS62 (dN/dS = 1.42), a gene that has previously been shown to be essential for mycobacterial survival in macrophages and granulomas. Imprint of positive selection operating on specific amino acid residues or along branches of PE_PGRS62 phylogenetic tree was further demonstrated using maximum likelihood- and covarion-based approaches, respectively. Strikingly, PE_PGR62 proved highly conserved in present-day MTBC strains.

CONCLUSIONS/SIGNIFICANCE: Overall the data indicate that, in STB, PE/PE_PGRS genes have undergone a strong diversification process that is speeded up by recombination, with evidence of positive selection. The finding that positive selection involved an essential PE_PGRS gene whose sequence appears to be driven to fixation in present-day MTBC strains lends further support to the critical role of PE/PE_PGRS genes in the evolution of mycobacterial pathogenicity.

摘要

背景

PE 和 PE_PGRS 是两种分枝杆菌限制性多基因家族,编码与膜相关和分泌的蛋白质,主要在致病性物种中扩张,特别是结核分枝杆菌复合体(MTBC)。有几条证据表明,PE 和 PE_PGRS 基因在分枝杆菌致病性中起着至关重要的作用。为了更深入地了解这些基因的性质,我们试图探讨它们在光滑结核分枝杆菌(STB)组中的进化轨迹,STB 是克隆 MTBC 的假定祖先。

方法/主要发现:通过聚焦于六个多态性 STB PE/PE_PGRS 基因,我们证明了单基因系统发育之间存在显著的不一致,并使用各种方法检测到强烈的重组信号。基于合并的种群重组和突变率(ρ和θ,分别)估计表明,这两种机制在产生多样性方面大致同等重要(ρ/θ=1.457),这一发现与主要由突变引起进化的管家基因(HKG)形成鲜明对比(ρ/θ=0.012)。与 HKG 相比,我们发现非同义替换的平均速率高 15 倍,并且强烈表明 PE_PGRS62 上存在正选择作用(dN/dS=1.42),该基因先前已被证明对分枝杆菌在巨噬细胞和肉芽肿中的存活至关重要。使用最大似然和协变量方法分别进一步证明了 PE_PGRS62 中特定氨基酸残基或分支上的正选择印记。引人注目的是,PE_PGR62 在当今的 MTBC 菌株中高度保守。

结论/意义:总体而言,数据表明,在 STB 中,PE/PE_PGRS 基因经历了一个由重组加速的强烈多样化过程,并且存在正选择的证据。正选择涉及到一个必需的 PE_PGRS 基因的发现,其序列似乎在当今的 MTBC 菌株中被驱动固定,这进一步支持了 PE/PE_PGRS 基因在分枝杆菌致病性进化中的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b68d/3660525/f8a2bb312b3b/pone.0064718.g001.jpg

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