Understanding how individuals redistribute after migration assists in the conservation and management of mobile species, yet the eco-evolutionary drivers of migratory connectivity remain unclear. Taking advantage of an exceptionally large (~150,000 individuals, 83 species) and more-than-a-century long dataset of bird ringing encounters, we investigated determinants of avian migratory connectivity on both short- and long-distance migrants. Most species exhibited significant connectivity likely due to the large intraspecific variability in migration strategies, which often led to the identification of distinct migratory populations. Migratory connectivity was strongly predicted by geography, especially migration distance, but it was evolutionary labile and weakly influenced by biological traits due to flexibility in migratory behaviour. By unravelling determinants of migratory connectivity we improve knowledge about the resilience of migrants to ecological perturbations. Also, our population-level analysis provides a critical tool to inform transboundary conservation and management strategies by explicitly considering the large intraspecific variability of avian migration.

Fattorini, N., Spina, F., Rubolini, D., Ambrosini, R. (2021). Patterns of migratory connectivity in the European-African migratory system as inferred by ring recovery analysis of the EURING database. In Proceedings of the EURING Analytical Meeting 2021 (pp.14-14).

Patterns of migratory connectivity in the European-African migratory system as inferred by ring recovery analysis of the EURING database

Fattorini Niccolo';
2021-01-01

Abstract

Understanding how individuals redistribute after migration assists in the conservation and management of mobile species, yet the eco-evolutionary drivers of migratory connectivity remain unclear. Taking advantage of an exceptionally large (~150,000 individuals, 83 species) and more-than-a-century long dataset of bird ringing encounters, we investigated determinants of avian migratory connectivity on both short- and long-distance migrants. Most species exhibited significant connectivity likely due to the large intraspecific variability in migration strategies, which often led to the identification of distinct migratory populations. Migratory connectivity was strongly predicted by geography, especially migration distance, but it was evolutionary labile and weakly influenced by biological traits due to flexibility in migratory behaviour. By unravelling determinants of migratory connectivity we improve knowledge about the resilience of migrants to ecological perturbations. Also, our population-level analysis provides a critical tool to inform transboundary conservation and management strategies by explicitly considering the large intraspecific variability of avian migration.
2021
Fattorini, N., Spina, F., Rubolini, D., Ambrosini, R. (2021). Patterns of migratory connectivity in the European-African migratory system as inferred by ring recovery analysis of the EURING database. In Proceedings of the EURING Analytical Meeting 2021 (pp.14-14).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11365/1236998