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Corticosterone implants produce stress-hyporesponsive birds.

Authors :
Torres-Medina F
Cabezas S
Marchant TA
Wikelski M
Romero LM
Hau M
Carrete M
Tella JL
Blas J
Source :
The Journal of experimental biology [J Exp Biol] 2018 Oct 11; Vol. 221 (Pt 19). Date of Electronic Publication: 2018 Oct 11.
Publication Year :
2018

Abstract

In birds, the use of corticosterone (Cort) implants is a frequent tool aimed at simulating systemic elevations of this hormone and studying effects on biological traits (e.g. physiology, morphology, behavior). This manipulation may alter adrenocortical function, potentially changing both baseline (Cort <subscript>BAS</subscript> ) and stress-induced (Cort <subscript>STRESS</subscript> ) plasma Cort levels. However, implant effects on the latter trait are rarely measured, disregarding downstream consequences of potentially altered stress responses. Here, we analyzed the effects of Cort implants on both Cort <subscript>BAS</subscript> and Cort <subscript>STRESS</subscript> in nestling and adult European white storks, Ciconia ciconia In addition, we performed a review of 50 studies using Cort implants in birds during the last two decades to contextualize stork results, assess researchers' patterns of use and infer current study biases. High and low doses of Cort implants resulted in a decrease of both Cort <subscript>BAS</subscript> (31-71% below controls) and Cort <subscript>STRESS</subscript> (63-79% below controls) in storks. Our literature review revealed that Cort <subscript>BAS</subscript> generally increases (72% of experiments) whereas Cort <subscript>STRESS</subscript> decreases (78% of experiments) following implant treatment in birds. Our results challenge and expand the prevailing assumption that Cort implants increase circulating Cort <subscript>BAS</subscript> levels because: (i) Cort <subscript>BAS</subscript> levels show a quadratic association with implant dose across bird species, and decreased levels may occur at both high and low implant doses, and (ii) Cort implants also decrease Cort <subscript>STRESS</subscript> levels, thus producing stress-hyporesponsive phenotypes. It is time to work towards a better understanding of the effects of Cort implants on adrenocortical function, before addressing downstream links to variation in other biological traits.<br />Competing Interests: Competing interestsThe authors declare no competing or financial interests.<br /> (© 2018. Published by The Company of Biologists Ltd.)

Details

Language :
English
ISSN :
1477-9145
Volume :
221
Issue :
Pt 19
Database :
MEDLINE
Journal :
The Journal of experimental biology
Publication Type :
Academic Journal
Accession number :
30111557
Full Text :
https://doi.org/10.1242/jeb.173864