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Updated: May 15, 2025

Applying Advanced In Vitro Culturing Technology to Study the Human Gut Microbiota
Published on: February 15, 2019
Effects of Different Feeding Patterns on the Gut Virome of 6-Month-Old Infants
Chunduo Pan1, Pan Xu1, Minli Yuan1
1Department of Pediatrics, The Affiliated Hospital of Jiangsu University, Zhenjiang, China.
Insights
Breastfeeding increases infant gut virus diversity via vertical transmission, promoting microbiome maturation. Formula-fed infants show higher Siphoviridae abundance, but overall phage composition remains similar.
Area of Science:
- Microbiology
- Virology
- Infant Health
Background:
- The gut microbiome is crucial for infant health.
- Enteroviruses' impact on infant health is gaining attention.
- Breast milk phages shape the infant gut virome, and breastfeeding regulates its colonization.
Purpose of the Study:
- To analyze the distribution characteristics of infant viral communities.
- To investigate differences in infant viral communities based on feeding practices.
- To understand how breastfeeding shapes the infant gut virome.
Main Methods:
- Collected fecal samples from healthy infants.
- Performed viral metagenomic analysis.
- Compared viral communities across different feeding patterns.
Main Results:
- The infant intestinal virome comprises phages and eukaryotic viruses.
- Caudovirales and Microviridae were the dominant phages.
- Formula-fed infants had higher Siphoviridae abundance; other phage groups showed no significant feeding-related differences.
- Breastfeeding increased gut virus diversity through vertical transmission.
Conclusions:
- Breastfeeding enhances infant gut virome diversity, aiding microbiome maturation.
- Feeding practices influence specific viral compositions, like Siphoviridae.
- This research provides insights into infant gut virome development and the role of breastfeeding.
Abstract:
The gut microbiome is essential for infant health, and in recent years, the impact of enteroviruses on infant health and disease has received increasing attention. The transmission of breast milk phages to the infant gastrointestinal tract contributes to the shaping of the infant gut virome, while breastfeeding regulates the colonization of the infant gut virome. In this study, we collected fecal samples from healthy infants and analyzed the distribution characteristics of infant viral communities by viral metagenomic analysis, and analyzed the differences in infant viral communities under different feeding practices. Our results indicate that the infant intestinal virome consists of phages and eukaryotic viruses. Caudovirales and Microviridae dominated the phage composition, and except for Siphoviridae, which was more predominant in the intestines of formula-fed infants, there were no significant differences in the overall abundance of other Caudovirales and Microviridae in the intestines of infants with different feeding patterns. Breastfeeding can lead to a higher diversity of infant gut viruses through vertical transmission, and a highly diverse gut virome helps maintain the maturation of the gut microbiome. This study informs the shaping of gut virome in healthy infants by breastfeeding and contributes to further research on infant gut virome characteristics and formation processes.
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