Published September 10, 2020 | Version v2

Migration variables and infection data for article "Effects of blood parasite infections on spatiotemporal migration patterns and activity budgets in a long-distance migratory passerine"

  • 1. Swiss Ornithological Institute, Sempach, Switzerland and Institute of Integrative Biology, ETH Zurich, Zürich, Switzerland
  • 2. Molecular Ecology and Evolution Lab, Department of Biology, Lund University, Lund, Sweden
  • 3. Swiss Ornithological Institute, Sempach, Switzerland
  • 4. School of Natural Sciences, Bangor University, Bangor, UK and Biological Station Rybachy, Zoological Institute of Russian Academy of Sciences, Rybachy, Russia and School of Life Sciences, Keele University, Keele, UK
  • 5. Institute of Vertebrate Biology, The Czech Academy of Sciences, Brno, Czech Republic
  • 6. Institute of Biodiversity and Ecosystem Research, Bulgarian Academy of Sciences, Sofia, Bulgaria

Description

Data related to the article "Effects of blood parasite infections on spatiotemporal migration patterns and activity budgets in a long-distance migratory passerine" in the format .csv. The 1st file (SupplTab_EcoEvo_data.csv) contains all variables used for the analyses and the 2nd file (SupplTab_EcoEvo_glossary.csv) contains explanations about the variables in the 1st file.

Notes

How blood parasite infections influence the migration of hosts remains a lively debated issue as past studies found negative, positive or no response to infections. This particularly applies to small birds, for which monitoring of detailed migration behaviour over a whole annual cycle has been technically unachievable so far. Here, we investigate how bird migration is influenced by parasite infections. To this end, we tracked great reed warblers (Acrocephalus arundinaceus) with multi-sensor loggers, characterized general migration patterns as well as detailed flight bout durations, resting times and flight heights and related these to the genus and intensity of their avian haemosporidian infections. We found migration distances to be shorter and the onset of autumn migration to be delayed with increasing intensity of blood parasite infection, in particular for birds with Plasmodium and mixed-genus infections. Additionally, the durations of migratory flight bout were prolonged for infected compared to uninfected birds. But since severely infected birds and particularly birds with mixed genus infections had shorter resting times, initial delays seemed to be compensated for and the timing in other periods of the annual cycle was not compromised by infection. Overall, our multi-sensor logger approach revealed that avian blood parasites have mostly subtle effects on migratory performance and that effects can occur in specific periods of the year only.

Files

SupplTab_EcoEvo_data.csv

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Additional details

Related works

Is new version of
Dataset: 10.5281/zenodo.4277445 (DOI)
Is supplement to
Journal article: 10.1002/ece3.7030 (DOI)
Journal article: 10.5281/zenodo.4593841 (DOI)

Funding

Swiss National Science Foundation
Host-parasite interactions on the move - mechanisms and cascading consequences of malaria infections in migratory birds 31003A_160265