Authors
Michael Schaub, Raphaël Arlettaz, Irmi Zwahlen, Ellen C Martin
Published in
Ecological applications : a publication of the Ecological Society of America. Volume 36. Issue 6. Pages e70301.
Abstract
Understanding the population dynamics of migratory species requires consideration of their entire annual cycle. A key requirement is the decomposition of annual survival into seasonal periods. While there is increasing evidence that migrations are the most dangerous phase of the annual cycle, temporal variation in seasonal survival and its effect on population dynamics is still poorly understood. Estimating seasonal survival is challenging when individuals are only encountered during a restricted period of their annual cycle. We developed and tested a continuous-time capture-recapture model applicable to data from marked individuals that can only be encountered during the breeding season. This model allows annual survival to be separated into breeding and non-breeding periods. We applied this model to encounter data of hoopoes (Upupa epops) collected between 2002 and 2024 from a Swiss population during the breeding period to estimate survival during the breeding and the non-breeding periods and their respective annual variations. We then linked seasonal survival with environmental variables from the breeding, stopover, and wintering grounds, which have been documented by previous research on the same population. Mortality hazards were 17 times greater during the non-breeding than during the breeding period, with stronger annual variation observed in the former. Mortality increased during both seasonal periods when a surrogate of prey abundance at the wintering grounds was lower. The effect during the non-breeding period highlighted that environmental conditions outside the breeding season were an important driver of hoopoe population dynamics, whereas the effect during the breeding period was weaker and provided evidence of a carry-over effect. In contrast, the environmental variables considered on the breeding and stopover grounds had little impact on seasonal survival. The study adds to the growing body of evidence suggesting that migration and wintering are critical phases in the life cycle of migratory birds and that population dynamics are strongly affected by environmental conditions encountered during wintering. The methodological approach developed is applicable to datasets that record multiple encounters of individuals during the breeding season. It enables the analysis of existing data to study temporal variation in survival across periods of the annual cycle.
PMID:
42706923
Bibliographic data and abstract were imported from PubMed on 08 Sep 2026.
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