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揭示犬科和猫科成员与人类之间的基因组多样性。

Disclosing the Genomic Diversity among Members of the Genus of Canine and Feline Origin with Respect to Those from Human.

机构信息

Laboratory of Probiogenomics, Department of Chemistry, Life Sciences, and Environmental Sustainability, University of Parmagrid.10383.39, Parma, Italy.

GenProbio srl, Parma, Italy.

出版信息

Appl Environ Microbiol. 2022 Apr 12;88(7):e0203821. doi: 10.1128/aem.02038-21. Epub 2022 Mar 14.

Abstract

In recent decades, much scientific attention has been paid to characterizing members of the genus due to their well-accepted ability to exert various beneficial effects upon their host. However, despite the well-accepted status of dogs and cats as principal companion animals of humans, the bifidobacterial communities that colonize their gut still represents a rather unexplored research area. To expand and further investigate the bifidobacterial ecosystem inhabiting the canine and feline intestine, strains belonging to this genus were isolated from fecal samples of dogs and cats and subjected to sequencing. The obtained sequencing data, together with publicly available genomes of strains belonging to the same bifidobacterial species of our isolates, and of both human and animal origin, were employed for in-depth comparative genome analyses. These phylogenomic investigations highlighted a different degree of genetic variability between human- or pet-derived bifidobacteria depending on the considered species, with B. pseudocatenulatum strains of pet origin showing higher genetic variability than human-derived strains of the same bifidobacterial species. Furthermore, evaluation of metabolic activities coupled with growth assays revealed the crucial role of diet in driving the genetic assembly of bifidobacteria as a result of their adaptation to the specific ecological niche they colonize. Despite cats and dogs being well recognized as the most intimate companion animals to humans, current knowledge on canine and feline gut microbial consortia is still far from being fully dissected compared to the significant advances achieved for other microbial ecosystems, such as the human gut microbiota. In this context, a combination of genome-based analysis and carbohydrate growth assay allowed us to further explore the canine and feline bifidobacterial community with respect to that inhabiting the human intestine. Specifically, these data revealed how strains of different bifidobacterial species seem to have evolved a different degree of host-specific adaptation. In detail, genotypic and phenotypic evidence of how diet can be considered the main factor of this host-specific adaptation is provided.

摘要

近几十年来,由于双歧杆菌属成员能够对其宿主发挥各种有益作用,因此引起了科学界的广泛关注。然而,尽管狗和猫被公认为人类的主要伴侣动物,但定植于它们肠道内的双歧杆菌群落仍然是一个相当未被探索的研究领域。为了扩展并进一步研究定植于犬和猫肠道内的双歧杆菌生态系统,我们从犬和猫的粪便样本中分离出属于双歧杆菌属的菌株,并对其进行了测序。将获得的测序数据与来自同一双歧杆菌属物种的、我们分离株的公开基因组数据,以及来自人和动物的基因组数据相结合,进行了深入的比较基因组分析。这些系统发育基因组学研究强调了不同双歧杆菌属的遗传变异性程度不同,这取决于所考虑的物种,宠物来源的双歧杆菌假长双歧杆菌菌株比同一双歧杆菌属的人源菌株具有更高的遗传变异性。此外,对代谢活性和生长测定的评估揭示了饮食在驱动双歧杆菌遗传组装方面的关键作用,这是由于它们适应了所定植的特定生态位。尽管猫和狗被公认为与人类最亲密的伴侣动物,但与人类肠道微生物群落相比,目前关于犬和猫肠道微生物群落的知识仍然远远不够,尽管在其他微生物生态系统(如人类肠道微生物群)方面已经取得了显著的进展。在这种情况下,基于基因组的分析和碳水化合物生长测定的组合使我们能够进一步研究犬和猫双歧杆菌群落,以了解其与人类肠道内双歧杆菌群落的关系。具体而言,这些数据揭示了不同双歧杆菌属物种的菌株似乎如何进化出不同程度的宿主特异性适应。详细地,提供了饮食如何被认为是这种宿主特异性适应的主要因素的基因型和表型证据。

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