Related Experiment Video
Updated: Sep 23, 2025

A Murine Model of Fetal Exposure to Maternal Inflammation to Study the Effects of Acute Chorioamnionitis on Newborn Intestinal Development
Published on: June 24, 2020
Intestinal Immune Development Is Accompanied by Temporal Deviation in Microbiota Composition of Newly Hatched Pigeon
Qianqian Xu1, Wenyan Zhao1, Yan Li1
1Key Laboratory for Molecular Animal Nutrition of the Ministry of Education, College of Animal Sciences, Zhejiang Universitygrid.13402.34, Hangzhou, China.
Insights
The first week post-hatch is critical for pigeon gut microbiota colonization and immune development. Early microbial colonization influences the innate and adaptive immune responses in the ileum, impacting disease resistance.
Area of Science:
- Animal Science
- Immunology
- Microbiology
Background:
- Understanding the interplay between gut microbiota and mucosal immunity in neonates is crucial for lifelong health.
- Limited knowledge exists regarding this interaction during the early posthatch development of altricial birds, like pigeons.
Purpose of the Study:
- To investigate the interaction between intestinal mucosal immune system development and commensal microbiota colonization in pigeon squabs during early posthatch development.
- To identify the critical window for microbiota colonization and its impact on immune system maturation.
Main Methods:
- Collected intestinal content and tissue from pigeon squabs at days 0, 7, 14, and 21.
- Performed microbial community analysis and genome-wide transcriptome profiling.
- Analyzed regional differences in immune gene expression and microbiota composition.
Main Results:
- The first week post-hatch is a critical window for ileal microbiota colonization; a stable microbiota is not established by day 21.
- The jejunum, not the ileum, plays a key role in both innate and adaptive immunity.
- Early colonization by Escherichia and Lactobacillus in the first week induces pro-inflammatory cytokines in the ileum, activating Th17 cells.
- Mucosal secretory IgA (SIgA) induction takes approximately 3 weeks, suggesting slower humoral adaptive immunity development.
Conclusions:
- Early life microbial colonization significantly shapes the developing intestinal immune system in pigeons.
- The findings help explain the susceptibility of pigeon squabs to intestinal infections, particularly in the ileum, during the early posthatch period.
- This study provides foundational insights into the early-life immune-microbiota axis in altricial birds.
Abstract:
Identifying the interaction between intestinal mucosal immune system development and commensal microbiota colonization in neonates is of paramount importance for understanding how early life events affect resistance to disease later in life. However, knowledge about this interaction during the early posthatch development period in altrices is limited. To fill this gap, samples of intestinal content and tissue were collected from newly hatched pigeon squabs at four time points (days 0, 7, 14, and 21) for microbial community analysis and genome-wide transcriptome profiling, respectively. We show that the first week after hatching seems to be the critical window for ileal microbiota colonization and that a potentially stable microbiota has not yet been well established at 21 days of age. Regional transcriptome differences revealed that the jejunum rather than the ileum plays a crucial role in immunity at both the innate and adaptive levels. In the ileum, temporal deviation in innate immune-related genes mainly occurs in the first week of life and is accompanied by a temporal change in microbiota composition, indicating that the ileal innate mucosal immune system development regulated by microbial colonization occurs mainly in this period. Furthermore, we provide evidence that colonization by Escherichia and Lactobacillus within the first week of life is likely one of the causative factors for the induction of proinflammatory cytokine expression in the ileum. We also demonstrate that cellular adaptive immune responses mediated by Th17 cells following commensal-induced proinflammatory cytokine production in the ileum begin as early as the first week posthatch, but this cellular immunity seems to be less effective in terms of maintaining the inflammatory response balance. Because the induction of high levels of mucosal secretory IgA (SIgA) seems to take approximately 3 weeks, we favor the idea that humoral adaptive immunity might be less active, at least, during the first 2 weeks of life. Our data may help to explain the phenomenon of the occurrence of intestinal infections mainly in the ileum of pigeon squabs during the early posthatch period. IMPORTANCE The pigeon (Columba livia), an altricial bird, is one of the most economically important farmed poultry for table purposes. Identifying the interaction between intestinal mucosal immune system development and commensal microbiota colonization in neonates is of paramount importance for understanding how early life events affect resistance to disease and potential productivity later in life. However, knowledge about this interaction during the early posthatch development period in altricial birds is limited. The study described herein is the first to try to provide insights into this interaction. Our data provide evidence on the mutual relationship between intestinal mucosal immune system development and commensal microbiota colonization in pigeon squabs and may help to explain the phenomenon of the occurrence of intestinal infections mainly in the ileum of pigeon squabs during the early posthatch period.
Related Concept Videos
Anatomy of the Intestines
Small Intestines
The small intestine is an ~7 meter-long tube with an inner diameter of just 2.5 cm. Since most nutrients are absorbed here, the inner lining of the...
Development of Immunocompetence
The initial cells that migrate from the fetal thymus settle within the skin and epithelial tissues lining the mouth, digestive tract, and in females, the uterus and vagina. These cells, including skin-based dendritic cells, serve as antigen-presenting cells, playing a key role in T cell activation.
Subsequent T...

