Systemic Humoral Immunity in the Partially Migratory Bat Leptonycteris yerbabuenae is Linked to the Gut Microbiota in a Sex-Specific Manner

The immune system and gut microbiota are interconnected components that play a key role in host health. The nature of this relationship in wildlife is under-explored, especially in migratory animals, which are exposed to diverse microorganisms that can impact their immune system, microbiota and health. This study explored the relationship between systemic humoral immunity (bacterial killing-ability, BKA, and total immunoglobulin G concentration, tIgG) and the diversity and composition of gut microbiota (16 S rRNA gene amplicons) in the lesser long-nosed bat Leptonycteris yerbabuenae . Males of this bat form resident populations whereas some females migrate to complete their reproductive cycle. No significant relationships were found between BKA and microbiota diversity (except for beta diversity in females), but tIgG was negatively correlated with Shannon index in females. Humoral immunity in both sexes was significantly related to fecal bacterial genera known to harbor immunostimulatory species, species linked to intestinal mucosa integrity, and infection-associated species. Other free-living and unclassified bacterial genera were associated with immunity in a sex-specific manner. These findings suggest that gut microbiota composition, and to a lesser extent diversity, are linked to systemic humoral immunity in L. yerbabuenae . The distinct relationship exhibited by each sex suggests that migration and other sex-associated traits may be crucial to understanding the natural variation of immunity in wildlife.

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Publication Details

Journal
Microbial Ecology
Published
2026-09-09
DOI
https://doi.org/10.1007/s00248-026-02881-5
Primary Topic
Bat Biology and Ecology Studies
Type
article
Field-Weighted Citation Impact
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article

Systemic Humoral Immunity in the Partially Migratory Bat Leptonycteris yerbabuenae is Linked to the Gut Microbiota in a Sex-Specific Manner

David Alfonso Rivera-Ruiz, Osiris Gaona, Luisa I. Falcón, L. Gerardo Herrera M. et al.
Microbial Ecology
Bat Biology and Ecology Studies
article

Systemic Humoral Immunity in the Partially Migratory Bat Leptonycteris yerbabuenae is Linked to the Gut Microbiota in a Sex-Specific Manner

David Alfonso Rivera-Ruiz, Osiris Gaona, Luisa I. Falcón, L. Gerardo Herrera M., Marco Tulio Solano de la Cruz, Carlos Rosales, José Juan Flores-Martínez
article en

Abstract

The immune system and gut microbiota are interconnected components that play a key role in host health. The nature of this relationship in wildlife is under-explored, especially in migratory animals, which are exposed to diverse microorganisms that can impact their immune system, microbiota and health. This study explored the relationship between systemic humoral immunity (bacterial killing-ability, BKA, and total immunoglobulin G concentration, tIgG) and the diversity and composition of gut microbiota (16 S rRNA gene amplicons) in the lesser long-nosed bat Leptonycteris yerbabuenae . Males of this bat form resident populations whereas some females migrate to complete their reproductive cycle. No significant relationships were found between BKA and microbiota diversity (except for beta diversity in females), but tIgG was negatively correlated with Shannon index in females. Humoral immunity in both sexes was significantly related to fecal bacterial genera known to harbor immunostimulatory species, species linked to intestinal mucosa integrity, and infection-associated species. Other free-living and unclassified bacterial genera were associated with immunity in a sex-specific manner. These findings suggest that gut microbiota composition, and to a lesser extent diversity, are linked to systemic humoral immunity in L. yerbabuenae . The distinct relationship exhibited by each sex suggests that migration and other sex-associated traits may be crucial to understanding the natural variation of immunity in wildlife.

Microbial Ecology
Universidad Autónoma de Guadalajara (MX), Universidad Autónoma de la Ciudad de México (MX), Universidad Nacional Autónoma de México (MX)
Life in Land
Openalex Percentile: Top 7%
Bat Biology and Ecology Studies
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