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Foraging movements are density-independent among straw-coloured fruit bats

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2020

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Royal Society Open Science. Royal Society of London. 2020, 7(5), 200274. eISSN 2054-5703. Available under: doi: 10.1098/rsos.200274

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Intraspecific competition in large aggregations of animals should generate density-dependent effects on foraging patterns. To test how large differences in colony size affect foraging movements, we tracked seasonal movements of the African straw-coloured fruit bat (Eidolon helvum) from four colonies that range from 4000 up to 10 million animals. Contrary to initial predictions, we found that mean distance flown per night (9–99 km), number of nightly foraging sites (2–3) and foraging and commuting times were largely independent of colony size. Bats showed classic central-place foraging and typically returned to the same day roost each night. However, roost switching was evident among individuals in three of the four colonies especially towards the onset of migration. The relatively consistent foraging patterns across seasons and colonies indicate that these bats seek out roosts close to highly productive landscapes. Once foraging effort starts to increase due to local resource depletion they migrate to landscapes with seasonally increasing resources. This minimizes high intraspecific competition and may help to explain why long-distance migration, otherwise rare in bats, evolved in this highly gregarious species.

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570 Biowissenschaften, Biologie

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ISO 690CALDERÓN CAPOTE, Maria C., Dina K. N. DECHMANN, Jakob FAHR, Martin WIKELSKI, Roland KAYS, Michael Teague O'MARA, 2020. Foraging movements are density-independent among straw-coloured fruit bats. In: Royal Society Open Science. Royal Society of London. 2020, 7(5), 200274. eISSN 2054-5703. Available under: doi: 10.1098/rsos.200274
BibTex
@article{CalderonCapote2020-05Forag-50406,
  year={2020},
  doi={10.1098/rsos.200274},
  title={Foraging movements are density-independent among straw-coloured fruit bats},
  number={5},
  volume={7},
  journal={Royal Society Open Science},
  author={Calderón Capote, Maria C. and Dechmann, Dina K. N. and Fahr, Jakob and Wikelski, Martin and Kays, Roland and O'Mara, Michael Teague},
  note={Article Number: 200274}
}
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