Dyachkova Marina S, Chekalin Evgeny V, Danilenko Valery N
Vavilov Institute of General Genetics, Russian Academy of Sciences, Moscow, Russia.
Front Microbiol. 2019 Oct 15;10:2374. doi: 10.3389/fmicb.2019.02374. eCollection 2019.
Bifidobacteria are commensal microorganisms that inhabit a wide range of hosts, including insects, birds and mammals. The mechanisms responsible for the adaptation of bifidobacteria to various hosts during the evolutionary process remain poorly understood. Previously, we reported that the species-specific PFNA gene cluster is present in the genomes of various species of the genus. The cluster contains signal transduction and adhesion genes that are presumably involved in the communication between bifidobacteria and their hosts. The genes in the PFNA cluster show high sequence divergence between bifidobacterial species, which may be indicative of rapid evolution that drives species-specific adaptation to the host organism. We used the maximum likelihood approach to detect positive selection in the PFNA genes. We tested for both pervasive and episodic positive selection to identify codons that experienced adaptive evolution in all and individual branches of the phylogenetic tree, respectively. Our results provide evidence that episodic positive selection has played an important role in the divergence process and molecular evolution of sequences of the species-specific PFNA genes in most bifidobacterial species. Moreover, we found the signatures of pervasive positive selection in the molecular evolution of the gene in all branches of the phylogenetic tree. These results are consistent with the suggested role of PFNA gene cluster in the process of specific adaptation of bifidobacterial species to various hosts.
双歧杆菌是共生微生物,存在于包括昆虫、鸟类和哺乳动物在内的多种宿主中。在进化过程中,双歧杆菌适应各种宿主的机制仍知之甚少。此前,我们报道物种特异性PFNA基因簇存在于该属的各种物种的基因组中。该基因簇包含信号转导和粘附基因,可能参与双歧杆菌与其宿主之间的通讯。PFNA基因簇中的基因在双歧杆菌物种之间表现出高度的序列差异,这可能表明快速进化推动了对宿主生物体的物种特异性适应。我们使用最大似然法检测PFNA基因中的正选择。我们分别测试了普遍和偶发的正选择,以识别在系统发育树的所有分支和各个分支中经历适应性进化的密码子。我们的结果提供了证据,表明偶发正选择在大多数双歧杆菌物种的物种特异性PFNA基因序列的分歧过程和分子进化中发挥了重要作用。此外,我们在系统发育树的所有分支中的基因分子进化中发现了普遍正选择的特征。这些结果与PFNA基因簇在双歧杆菌物种对各种宿主的特异性适应过程中的作用一致。