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DNA Methylation Associates With Sex-Specific Effects of Experimentally Increased Yolk Testosterone in Wild Nestlings. | LitMetric

AI Article Synopsis

  • Maternal hormones, particularly androgens like testosterone, can significantly influence the physiological and behavioral traits of offspring, affecting them differently based on their sex.
  • A study involving wild great tit eggs demonstrated that increasing yolk testosterone reduced begging behavior and altered fledging mass while also leading to sex-specific changes in DNA methylation at 763 specific sites linked to growth and reproduction.
  • These findings imply that maternal testosterone influences offspring traits through changes in DNA methylation, highlighting the need for further research to determine if these effects persist beyond the early life stage and influence overall fitness.

Article Abstract

Maternal hormones can profoundly impact offspring physiology and behaviour in sex-dependent ways. Yet little is known about the molecular mechanisms linking these maternal effects to offspring phenotypes. DNA methylation, an epigenetic mechanism, is suggested to facilitate maternal androgens' effects. To assess whether phenotypic changes induced by maternal androgens associate with DNA methylation changes, we experimentally manipulated yolk testosterone levels in wild great tit eggs (Parus major) and quantified phenotypic and DNA methylation changes in the hatched offspring. While we found no effect on the handing stress response, increased yolk testosterone levels decreased the begging probability, emphasised sex differences in fledging mass, and affected methylation at 763 CpG sites, but always in a sex-specific way. These sites are associated with genes involved in growth, oxidative stress, and reproduction, suggesting sex-specific trade-offs to balance the costs and benefits of exposure to high yolk testosterone levels. Future studies should assess if these effects extend beyond the nestling stage and impact fitness.

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Source
http://dx.doi.org/10.1111/mec.17647DOI Listing

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