FP7Reintegration grant2013–2017

CYOV_EFFS · Seasonal interactions in migratory seabirds: influence of carryover effects on fitness

FP7 — People (Marie Curie Actions)

Duration
2013-12-01 → 2017-11-30
EU contribution
€100,000
Participants
1
Scheme
MC-CIG

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Results in brief

Seasonal interactions in migratory seabirds: influence of carryover effects on fitness

Migratory species spend different stages of the annual cycle in geographically disparate places but events and processes occurring at each stage are inextricably linked because what occurs in one season carries over to influence behaviour, breeding success or survival of the following season. In the present project, we worked on three closely related species of long-lived and long-distance migratory seabirds (Calonectris shearwaters) breeding on Mediterranean and Atlantic Islands. We used the most complete tracking dataset ever compiled, which includes 26 populations (with 11 contributor teams) spread over the breeding range of each species. First, we established the year-round distribution and migratory connectivity and identified the use of specific non-breeding areas, as well as precise migration schedules for the three species. Second, we unravelled how long-distance migrants trade off among energy-demanding activities (mainly breeding, moulting and migrating) by experimentally reducing their parental effort through an induced breeding failure at the incubation stage. We did not detect any difference in the spatio-temporal distribution or the timing of major phenological events between birds put in failure and successful breeders. Nevertheless, failed breeders did advance significantly their moulting schedules (as revealed by stable isotope analysis and flying activity patterns) and showed lower stress levels (inferred through corticosterone concentrations in different feathers), providing robust evidence on how costs of reproduction can be transferred to the next stage but also dilute at the end of it. The complimentary SIA and pollutants of tracked birds allowed us to understand baseline isotopic gradients and pollutant levels in the ocean, with deep ecological, methodological and conservation implications. Our next goals are assessing the impact of carryover effects and the use of different migratory strategies on population dynamics and modelling the environmental preferences of each species to predict and foresee future changes in the habitat utilization of seabirds in relation to global warming. This project has led to a number of scientific achievements (3 published articles in SCI-ranked journals, 4 submitted ms, 7 ms currently in advanced stage of preparation, 2 publications in popular-science journals, 15 oral contributions in 8 international conferences and meetings, etc) that are advancing the fellow’s research career. By participating in the organization of one international conference (IAPC6), supervising 3 PhD (in progress) and 9 Master (7 completed and 2 in progress) students and building a wide international research network (co-authored with >20 research institutes from 10 countries) at the University of Barcelona, the fellow is advancing toward his re-integration at this host institution. Overall, the project significantly contributed to the fellow establishment as mature researcher, opening new research avenues in collaboration with several members of this University.

Data: CORDIS, © European Union

Project objective

Migratory species spend different parts of the annual cycle in geographically disparate places but events and processes occurring at each stage are inextricably linked because what occurs in one season carry over to influence individual success the following season. For instance, habitat quality in the non-breeding grounds can affect physical condition, reproductive success and survival during the breeding season; and similarly, conditions and reproductive performance during breeding can also influence migration strategy and the chances of survival in the subsequent non-breeding season. Since carryover effects are likely to be responsible for a large amount of variation in individual fitness, assessing their importance is critical for understanding population dynamics and implementing conservation and management strategies, but it has only been described in a few terrestrial species. Within this framework, we will first determine migratory ecology of a given complex of seabird species (Calonectris sp) breeding on Mediterranean and Atlantic Islands, at inter-specific, intra-specific, and individual levels. Secondly, and more interestingly, we will assess the influence of seasonal interactions and the carryover effects on individual fitness and population dynamics in these highly pelagic seabird species. To test these seasonal links, we will study empirically and experimentally the movements of shearwaters (including foraging effort and wintering areas), annual schedules (arrival/departure dates), moulting patterns, breeding performance, physical condition, levels of stress, habitat quality and survival throughout the year. Thus, by combining biologging techniques, spatial modelling, biogeochemistry, animal physiology, and environmental ecology, in addition to observational data, this proposal will enable the applicant to develop his training in the fields of animal behaviour and migratory ecology and to obtain original results of broad basic and applied relevance.

Original text from CORDIS.

Participants

  • UNIVERSITAT DE BARCELONA · BarcelonaCoordinatorSpain

Links

Data: CORDIS, © European Union