Differences in the gut Firmicutes to Bacteroidetes ratio across age groups in healthy Ukrainian population

A Vaiserman, M Romanenko, L Piven, V Moseiko… - BMC microbiology, 2020 - Springer
A Vaiserman, M Romanenko, L Piven, V Moseiko, O Lushchak, N Kryzhanovska…
BMC microbiology, 2020Springer
Background Gut microbiota plays an important role in physiological and pathological
processes of the host organism, including aging. Microbiota composition was shown to vary
significantly throughout the life course. Age-related changes in the composition of microbiota
were reported in several human studies. In present study, age-related dynamics of
phylogenetic profile of gut microbiota was investigated in 1550 healthy participants from
Ukrainian population. Results Significant changes in the microbiota composition determined …
Background
Gut microbiota plays an important role in physiological and pathological processes of the host organism, including aging. Microbiota composition was shown to vary significantly throughout the life course. Age-related changes in the composition of microbiota were reported in several human studies. In present study, age-related dynamics of phylogenetic profile of gut microbiota was investigated in 1550 healthy participants from Ukrainian population.
Results
Significant changes in the microbiota composition determined by qRT-PCR at the level of major microbial phyla across age groups have been observed. The relative abundance of Actinobacteria and Firmicutes phyla increased, while that of Bacteroidetes decreased from childhood to elderly age. Accordingly, the Firmicutes/Bacteroidetes (F/B) ratio was shown to significantly increase until elder age. In both sexes, odds to have F/B > 1 tended to increase with age, reaching maximum values in elder age groups [OR = 2.7 (95% CI, 1.2–6.0) and OR = 3.7 (95% CI, 1.4–9.6) for female and male 60–69-year age groups, respectively, compared to same-sex reference (0–9-year) age groups].
Conclusions
In conclusion, data from our study indicate that composition of the human intestinal microbiota at the level of major microbial phyla significantly differs across age groups. In both sexes, the F/B ratio tends to increase with age from 0–9-year to 60–69-year age groups. Further studies are needed for a better understanding of mechanisms underlying age-related dynamics of human microbiota composition.
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