Comparative genomics and physiology of the butyrate‐producing bacterium Intestinimonas butyriciproducens
Сравнительная геномика и физиология бутират-продуцирующей бактерии Intestinimonas butyriciproducens
2016-10-13
SCID: 54.1/zgrkfz8n
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Average nucleotide identityButyrate productionCRISPR sequencesComparative genomicsIntestinimonas butyriciproducens
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Abstract (AI)
Summary Intestinimonas is a newly described bacterial genus with representative strains present in the intestinal tract of human and other animals. Despite unique metabolic features including the production of butyrate from both sugars and amino acids, there is to date no data on their diversity, ecology, and physiology. Using a comprehensive phylogenetic approach, Intestinimomas was found to include at least three species that colonize primarily the human and mouse intestine. We focused on the most common and cultivable species of the genus, Intestinimonas butyriciproducens , and performed detailed genomic and physiological comparison of strains SRB521 T and AF211, isolated from the mouse and human gut respectively. The complete 3.3‐Mb genomic sequences of both strains were highly similar with 98.8% average nucleotide identity, testifying to their assignment to one single species. However, thorough analysis revealed significant genomic rearrangements, variations in phage‐derived sequences, and the presence of new CRISPR sequences in both strains. Moreover, strain AF211 appeared to be more efficient than strain SRB521 T in the conversion of the sugars arabinose and galactose. In conclusion, this study provides genomic and physiological insight into Intestinimonas butyriciproducens , a prevalent butyrate‐producing species, differentiating strains that originate from the mouse and human gut.
Key Findings
1
Despite high overall genomic similarity, the strains exhibit substantial genomic rearrangements, differences in phage-derived sequences, and distinct newly identified CRISPR sequences.
2
Phylogenetic analysis indicates that the Intestinimonas genus comprises at least three species primarily colonizing human and mouse intestines.
3
The complete 3.3-Mb genomes of I. butyriciproducens strains SRB521T and AF211 share 98.8% average nucleotide identity, supporting classification within one species.
4
The human-gut isolate AF211 converts arabinose and galactose more efficiently than the mouse-gut isolate SRB521T.
5
The study establishes genomic and physiological differences between I. butyriciproducens strains from human and mouse intestines, despite their shared species assignment.
Research Object
Intestinimonas butyriciproducens strains SRB521T and AF211 from the mouse and human gut
Research Subject
Comparative genomic diversity and physiological differences, including sugar-conversion efficiency, between the strains
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2016-10-13
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