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Temporal stability of fecal cortisol metabolites in mountain-dwelling ungulates

Valerio Donini; Elisa Iacona; Luca Pedrotti; Sabine Macho-Maschler; Rupert Palme; Luca Corlatti
The Science of Nature · Vol. 109, Issue 2 · 2022

Abstract

Fecal cortisol metabolites (FCMs) are widely used to track stress responses in wildlife and captive species. Rules of thumb suggest that samples should be collected as soon as possible after defecation, to avoid decay of FCMs. To date, however, only a few studies investigated the stability of defecated FCMs over time, and most of them were conducted in controlled laboratory conditions. Here, we investigated the stability of FCMs over seven consecutive days, in two mountain-dwelling ungulates, under natural environmental conditions using a semi-experimental approach. Fecal samples from Northern chamois Rupicapra rupicapra ( n = 24) and red deer Cervus elaphus ( n = 22) were collected in summer of 2020 within the Stelvio National Park, Italy, and placed in an open area above 2000 m a.s.l. For the next 7 days, we collected a portion of each sample, and all sub-samples were analyzed with an 11-oxoetiocholanolone enzyme immunoassay. Exposure, temperature, and precipitation were fitted as covariates in non-linear generalized mixed models to assess FCM variation over time, and competing models were selected using AICc. For chamois, the best model included only time as a predictor, while for red deer, it included time, precipitation, and exposure. For both species, FCM values decreased rapidly from the first days after deposition until the fourth day. For red deer, in northern-exposed samples, FCM values decreased slower than in south-exposed ones; furthermore, FCM values increased with increasing precipitation. Our results offer a solid methodological basis to wildlife researchers and practitioners interested in the investigation of the ecological factors affecting stress variation in wildlife and support the recommendation to collect samples as fresh as possible, to avoid misleading inference. Further studies are necessary to evaluate the stability of FCMs when other enzyme immunoassays are used.

Bibliographic Information

JournalThe Science of Nature
PublisherSpringer
Publication Date2022-04-01
Publication Year2022
Volume109
Issue2
Document TypeJournal Article
Print ISSN0028-1042
eISSN1432-1904
DOI10.1007/s00114-022-01792-y

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NARA Access Coverage1913-01-01~Current
Journal Homepagehttps://www.springer.com/journal/114
Publisher PageOpen Publisher Page
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