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Oral Biofilm Sampling for Microbiome Analysis in Healthy Children
Published on: December 31, 2017
Infant Mode of Delivery Shapes the Skin Mycobiome of Prepubescent Children
Yan-Ren Wang1, Ting Zhu1, Fan-Qi Kong2
1Ministry of Education Key Laboratory for Biodiversity Science and Ecological Engineering, Institute of Biodiversity Science, School of Life Sciences, Fudan Universitygrid.8547.e, Shanghai, China.
Insights
Mode of delivery significantly shapes children's skin mycobiome. Vaginally born children show age-related fungal community changes, unlike caesarean-born children, impacting long-term microbial colonization.
Area of Science:
- Microbiology
- Human Microbiome Research
- Pediatric Dermatology
Background:
- The human skin microbiome is established at birth and plays a role in immune system development.
- The hygiene hypothesis suggests early-life microbial exposure influences later health outcomes.
- Understanding fungal colonization in children is crucial, especially concerning delivery modes.
Purpose of the Study:
- To characterize the skin mycobiome in prepubescent children and their mothers.
- To investigate the influence of age and delivery mode on the skin mycobiome.
- To explore the association between delivery mode and the maturation of the skin fungal community.
Main Methods:
- Internal transcribed spacer (ITS) amplicon sequencing was used to analyze skin fungal communities.
- The study included 72 prepubescent children (aged 1-10 years) and their mothers.
- Skin samples were collected from the face, ventral forearm, and calf.
Main Results:
- Delivery mode and age are key factors influencing the skin mycobiome composition.
- Caesarean-born children have a more deterministic and fragile fungal network compared to vaginally born children.
- Vaginal delivery promotes age-related specialization in fungal communities, which is absent in caesarean-born children.
Conclusions:
- Delivery mode significantly impacts the maturation and ecological processes of the skin mycobiome in children.
- Initial microbial colonization, influenced by delivery mode, has lasting effects on the skin fungal community.
- Findings offer insights into the hygiene hypothesis and early-life microbiome development.
Abstract:
Characterizing the skin mycobiome is necessary to define its association with the host immune system, particularly in children. In this study, we describe the skin mycobiome on the face, ventral forearm, and calf of 72 prepubescent children (aged 1 to 10 years) and their mothers, based on internal transcribed spacer (ITS) amplicon sequencing. The age and delivery mode at birth are the most influential factors shaping the skin mycobiome. Compared with that of the vaginally born children, the skin mycobiome of caesarean-born children is assembled by predominantly deterministic niche-based processes and exhibits a more fragile microbial network at all three sampling sites. Moreover, vaginal delivery leads to clearer intra- and interindividual specialization of fungal structures with increasing age; this phenomenon is not observed in caesarean-born children. The maternal correlation with children also differs based on the mode of delivery; specifically, the mycobiomes of vaginally born children at younger ages are more strongly correlated with vagina-associated fungal genera (Candida and Rhodotorula), whereas those of caesarean-delivered children at elder age include more skin-associated and airborne fungal genera (Malassezia and Alternaria). Based on this ecological framework, our results suggest that the delivery mode is significantly associated with maturation of the skin fungal community in children. IMPORTANCE Human skin is permanently colonized by microbes starting at birth. The hygiene hypothesis suggests that a lack of early-life immune imprinting weakens the body's resilience against atopic disorders later in life. To better understand fungal colonization following early-life periods affected by interruption, we studied the skin mycobiomes of 73 children and their mothers. Our results suggest a differentiation of the skin mycobiomes between caesarean-born and vaginally born children. Caesarean-born children exhibit a mycobiome structure with more fitted deterministic niche-based processes, a fragile network, and an unchanged microbial dissimilarity over time. In vaginally born children, this dissimilarity increases with age. The results indicate that initial microbial colonization has a long-term impact on a child's skin mycobiome. We believe that these findings will inspire further investigations of the "hygiene hypothesis" in the human microbiome, especially in providing novel insights into influences on the development of the early-life microbiome.
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