Wild Birds鈥 Gut Microbiome Linked With Ornamentation, Body Condition
A Northern cardinal, which is a strikingly beautiful songbird known for its vivid red plumage and distinctive features that include a red beak and a black mask around the eyes.
All living organisms host microbiomes composed of both beneficial and harmful microbes that influence health. Microbiome diversity affects host fitness: low diversity can lead to immune issues and poor nutrient absorption, while high diversity can boost resilience to stress and pathogens.
To illuminate this issue, researchers from 极品少妇XXXX做受鈥檚 Charles E. Schmidt College of Science, have spent the last five years studying the relationships between songbird gut microbiomes and traits that relate to a bird鈥檚 health and breeding success. While links between the gut microbiome and other traits have been described in laboratory experiments with captive animals, little is known about these relationships in wild animals, and even less in birds.
Using a common backyard bird, the Northern cardinal (Cardinalis cardinalis), a new study provides the first-ever description of how a wild bird鈥檚 microbiome relates to its ornamentation and body condition. This strikingly beautiful songbird is known for its vivid red plumage and distinctive features, which include a red beak and a black mask around the eyes.
Results of the study, published in the journal , reveal that a cardinal鈥檚 gut microbiome diversity can be predicted by its body condition, and the quality of its ornamentation 鈥 red plumage and beak.
鈥淥ur findings confirm the hypothesis that a wild bird鈥檚 health is tied to its microbiome, and that the 鈥榮exiness鈥 of a male鈥檚 ornaments can signal his health,鈥 said , Ph.D., senior author and an associate professor in 极品少妇XXXX做受鈥檚 .
This species, with its sexually selected carotenoid pigments, provided a unique opportunity to explore how these traits relate to gut microbiota. Cardinals鈥 vibrant coloration is a well-known example of how carotenoid pigments reflect an individual鈥檚 quality.
鈥淭his study has important applications for conservation biology and contributes to a better understanding of ways to improve animal health in settings such as wildlife hospitals, zoos and aquaria, and captive breeding programs for endangered species,鈥 said Morgan Slevin, first author and a Ph.D. candidate in 极品少妇XXXX做受鈥檚 Department of Biological Sciences.
To test for relationships between the microbiota and host fitness, researchers sampled the cloacal microbiomes of wild cardinals and measured body condition index, assessed coloration of sexual ornaments (beak and plumage), and collected blood to estimate the glucocorticoid response to stress. To better understand the microbiota-gut-brain axis in free-living songbirds, they described the baseline relationships, or lack thereof, among multiple aspects of this system in wild cardinals.
鈥淥verall, cardinal ornament redness and saturation positively correlate with individual quality,鈥 said Slevin. 鈥淭hus, deeper red coloration indicates greater carotenoid pigmentation. We were able to show that a cardinal鈥檚 coloration related to its microbiome diversity.鈥澛
Both alpha and beta bacterial diversity were related to individual variation in body condition and several sexual ornaments, but not glucocorticoid concentrations. Irrespective of directionality, beak saturation also related to beta diversity, indicating that birds with more similar beak coloration profiles had more similar microbiome community structures.
鈥淲hile we anticipated that birds with the most saturated beaks would be the highest quality individuals, and that the highest quality individuals would have the most diverse microbiomes, our results suggest that maintaining a diverse microbiome might instead come at a cost to beak saturation,鈥 said Slevin.聽
Findings from a free-living songbird population add to a growing body of research linking avian host fitness to internal bacterial community characteristics.聽
鈥淯ltimately, our study and those that follow should move us closer to answering the overall question of whether a bird鈥檚 gut microbiome can predict individual quality,鈥 said Anderson.
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