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Published on: August 23, 2019
Long-term colonization exceeding six years from early infancy of Bifidobacterium longum subsp. longum in human gut
Kaihei Oki1, Takuya Akiyama2,3, Kazunori Matsuda2,3
1Yakult Honsha European Research Center for Microbiology ESV, Technologiepark 4, Gent-Zwijnaarde, Belgium. kaihei.oki@yher.be.
Insights
Certain Bifidobacterium longum strains establish long-term gut colonization from early infancy, persisting for over six years. These findings highlight the lasting impact of early-life gut bacteria on host health.
Area of Science:
- Microbiology
- Human Health
- Gut Microbiome Research
Background:
- Gut microbiota plays a crucial role in early life development and long-term health.
- Bifidobacterium longum subsp. longum is a common infant gut bacterium, present from shortly after birth.
- Long-term colonization of B. longum subsp. longum from infancy remains poorly understood.
Purpose of the Study:
- To investigate the long-term colonization of Bifidobacterium longum subsp. longum in infants.
- To compare genotypes of B. longum subsp. longum isolates over time from individual subjects.
- To explore potential transmission from mothers to infants.
Main Methods:
- Longitudinal fecal sample collection from 12 subjects from infancy to approximately six years of age.
- Genotyping of Bifidobacterium longum subsp. longum isolates.
- Analysis of maternal perinatal samples (prenatal feces, postnatal breast milk).
Main Results:
- Several Bifidobacterium longum subsp. longum strains were identified as long-term colonizers, persisting for over six years from as early as 90 days of age.
- Intra-species diversity was observed in infant and maternal samples.
- One long-term colonizing strain was detected in maternal breast milk.
Conclusions:
- Bifidobacterium longum subsp. longum strains can colonize the human gut from early infancy and persist for over six years.
- These long-term colonizers coexist with other predominant Bifidobacterium species.
- Early-life microbial colonization is critical for gut succession and may influence the longitudinal effects of infant probiotics.
Background:
The importance of the gut microbiota at the early stage of life and their longitudinal effect on host health have recently been well investigated. In particular, Bifidobacterium longum subsp. longum, a common component of infant gut microbiota, appears in the gut shortly after birth and can be detected there throughout an individual's lifespan. However, it remains unclear whether this species colonizes in the gut over the long term from early infancy. Here, we investigated the long-term colonization of B. longum subsp. longum by comparing the genotypes of isolates obtained at different time points from individual subjects. Strains were isolated over time from the feces of 12 subjects followed from early infancy (the first six months of life) up to childhood (approximately six years of age). We also considered whether the strains were transmitted from their mothers' perinatal samples (prenatal feces and postnatal breast milk).
Results:
Intra-species diversity of B. longum subsp. longum was observed in some subjects' fecal samples collected in early infancy and childhood, as well as in the prenatal fecal samples of their mothers. Among the highlighted strains, several were confirmed to colonize and persist in single individuals from as early as 90 days of age for more than six years; these were classified as long-term colonizers. One of the long-term colonizers was also detected from the corresponding mother's postnatal breast milk. Quantitative polymerase chain reaction data suggested that these long-term colonizers persisted in the subjects' gut despite the existence of the other predominant species of Bifidobacterium.
Conclusions:
Our results showed that several strains belonging to B. longum subsp. longum colonized in the human gut from early infancy through more than six years, confirming the existence of long-term colonizers from this period. Moreover, the results suggested that these strains persisted in the subjects' gut while co-existing with the other predominant bifidobacterial species. Our findings also suggested the importance of microbial-strain colonization in early infancy relative to their succession and showed the possibility that probiotics targeting infants might have longitudinal effects.
Trial Registration:
TRN: ISRCTN25216339 . Date of registration: 11/03/2016. Prospectively registered.
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