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This content will become publicly available on August 1, 2025

Title: Manipulation of a social signal affects DNA methylation of a stress-related gene in a free-living bird
ABSTRACT Social status directly affects the health of humans and other animals. Low status individuals receive more antagonistic encounters, have fewer supportive relationships and have worse health outcomes. However, the physiological and cellular processes that mediate the relationship between the social environment and health are incompletely known. Epigenetic regulation of the hypothalamic–pituitary–adrenal (HPA) axis, the neuroendocrine pathway that activates in response to stressors, may be one process that is sensitive to the social environment. Here, we experimentally manipulated plumage, a key social signal in female tree swallows (Tachycineta bicolor) and quantified methylation of four genes in the HPA axis before and after treatment. We found that dulling the white breast plumage affected methylation in one gene, CRHR1; however, the effect depended on the original brightness of the bird. Methylation in this gene was correlated with baseline corticosterone levels, suggesting that DNA methylation of CRHR1 helps regulate glucocorticoid production in this species. Methylation in two other genes, FKBP5 and GR, changed over the course of the experiment, independent of treatment. These results show that methylation of these genes is labile into adulthood and suggest that epigenetic regulation of the HPA axis could help birds respond to current environmental conditions.  more » « less
Award ID(s):
2128337
PAR ID:
10569033
Author(s) / Creator(s):
; ;
Publisher / Repository:
Journal of Experimental Biology
Date Published:
Journal Name:
Journal of Experimental Biology
Volume:
227
Issue:
15
ISSN:
0022-0949
Format(s):
Medium: X
Sponsoring Org:
National Science Foundation
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