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Updated: Apr 6, 2026

Oral Biofilm Sampling for Microbiome Analysis in Healthy Children
Published on: December 31, 2017
Having older siblings is associated with gut microbiota development during early childhood
Martin Frederik Laursen1, Gitte Zachariassen2, Martin Iain Bahl3
1Division of Diet, Disease Prevention and Toxicology, National Food Institute, Technical University of Denmark, Mørkhøj Bygade 19, DK-2860, Søborg, Denmark. mfrla@food.dtu.dk.
Insights
Having older siblings boosts infant gut microbial diversity, potentially supporting the hygiene hypothesis. However, this study found no link between gut microbes and early childhood allergies like eczema or asthma.
Area of Science:
- Microbiome research
- Pediatric allergy and immunology
- Environmental influences on health
Background:
- Early life exposures like siblings, pets, and infections may influence allergic disease risk via microbial changes.
- Low infant gut microbial diversity is a potential risk factor for developing allergies later in life.
Purpose of the Study:
- To investigate how older siblings, pets, and infections impact infant gut microbiota at 9 and 18 months.
- To determine if these microbial differences correlate with atopic symptoms (eczema, asthmatic bronchitis) by age 3.
Main Methods:
- 16S rRNA gene sequencing of fecal samples from 114 infants (SKOT I cohort).
- Analysis of bacterial composition and diversity indices.
- Comparison with sibling presence, pet ownership, infections, and allergy prevalence at 3 years.
Main Results:
- More older siblings correlated with higher gut bacterial diversity and richness at 18 months.
- Older siblings were linked to increased abundance of specific bacterial taxa at 9 and 18 months.
- Pet presence and infections had less impact on gut microbiota compared to siblings; no significant association found between gut microbiota and early-life atopic symptoms.
Conclusions:
- Older siblings promote gut microbial diversity and richness in early childhood, supporting the hygiene hypothesis.
- No association was found between gut microbiota and atopic symptoms in the first three years.
- Further research is needed to explore if sibling-associated microbial changes influence later allergy development.
Background:
Evidence suggests that early life infections, presence of older siblings and furred pets in the household affect the risk of developing allergic diseases through altered microbial exposure. Recently, low gut microbial diversity during infancy has also been linked with later development of allergies. We investigated whether presence of older siblings, furred pets and early life infections affected gut microbial communities at 9 and 18 months of age and whether these differences were associated with the cumulative prevalence of atopic symptoms of eczema and asthmatic bronchitis at 3 years of age. Bacterial compositions and diversity indices were determined in fecal samples collected from 114 infants in the SKOT I cohort at age 9 and 18 months by 16S rRNA gene sequencing. These were compared to the presence of older siblings, furred pets and early life infections and the cumulative prevalence of diagnosed asthmatic bronchitis and self-reported eczema at 3 years of age.
Results:
The number of older siblings correlated positively with bacterial diversity (p = 0.030), diversity of the phyla Firmicutes (p = 0.013) and Bacteroidetes (p = 0.004) and bacterial richness (p = 0.006) at 18 months. Further, having older siblings was associated with increased relative abundance of several bacterial taxa at both 9 and 18 months of age. Compared to the effect of having siblings, presence of household furred pets and early life infections had less pronounced effects on the gut microbiota. Gut microbiota characteristics were not significantly associated with cumulative occurrence of eczema and asthmatic bronchitis during the first 3 years of life.
Conclusions:
Presence of older siblings is associated with increased gut microbial diversity and richness during early childhood, which could contribute to the substantiation of the hygiene hypothesis. However, no associations were found between gut microbiota and atopic symptoms of eczema and asthmatic bronchitis during early childhood and thus further studies are required to elucidate whether sibling-associated gut microbial changes influence development of allergies later in childhood.
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