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.