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Proximity sensors reveal social information transfer in maternity colonies of Common noctule bats

View ORCID ProfileSimon Ripperger, Linus Günther, Hanna Wieser, Niklas Duda, Martin Hierold, Björn Cassens, Rüdiger Kapitza, Alexander Kölpin, Frieder Mayer
doi: https://doi.org/10.1101/421974
Simon Ripperger
1Museum für Naturkunde, Leibniz-Institute for Evolution and Biodiversity Science, Invalidenstraße 43, 10115 Berlin, Germany
2Smithsonian Tropical Research Institute, PO Box 0843-03092, Balboa, Ancón, Republic of Panama
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  • For correspondence: simon.ripperger@gmail.com
Linus Günther
1Museum für Naturkunde, Leibniz-Institute for Evolution and Biodiversity Science, Invalidenstraße 43, 10115 Berlin, Germany
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Hanna Wieser
1Museum für Naturkunde, Leibniz-Institute for Evolution and Biodiversity Science, Invalidenstraße 43, 10115 Berlin, Germany
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Niklas Duda
3Institute for Electronics Engineering, Friedrich-Alexander University of Erlangen-Nürnberg, Wetterkreuz 15, 91058 Erlangen-Tennenlohe, Germany
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Martin Hierold
3Institute for Electronics Engineering, Friedrich-Alexander University of Erlangen-Nürnberg, Wetterkreuz 15, 91058 Erlangen-Tennenlohe, Germany
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Björn Cassens
4Carl-Friedrich-Gauß-Fakultät, Technische Universität Braunschweig, Mühlenpfordtstraße 23, 38106 Braunschweig
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Rüdiger Kapitza
4Carl-Friedrich-Gauß-Fakultät, Technische Universität Braunschweig, Mühlenpfordtstraße 23, 38106 Braunschweig
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Alexander Kölpin
5Chair for Electronics and Sensor Systems, Brandenburg University of Technology, Siemens-Halske-Ring 14, 03046 Cottbus, Germany
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Frieder Mayer
1Museum für Naturkunde, Leibniz-Institute for Evolution and Biodiversity Science, Invalidenstraße 43, 10115 Berlin, Germany
6Berlin-Brandenburg Institute of Advanced Biodiversity Research, Altensteinstr. 34, 14195 Berlin, Germany
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Summary

  1. Bats are a highly gregarious taxon suggesting that social information should be readily available for making decision. Social information transfer in maternity colonies might be a particularly efficient mechanism for naïve pups to acquire information on resources from informed adults. However, such behaviour is difficult to study in the wild, in particular in elusive and small-bodied animals such as bats.

  2. The goal of this study was to investigate the role of social information in acquiring access to two types of resources, which are crucial in the life of a juvenile bat: suitable roosting sites and fruitful feeding grounds. We hypothesized that fledging offspring will make use of social information by following informed members of the social groups to unknown roosts or foraging sites.

  3. In the present study we applied for the first time the newly developed miniaturized proximity sensor system ‘BATS’, a fully automated system for documenting associations among individual bats both while roosting and while on the wing. We quantified associations among juveniles and other group member while switching roosts and during foraging.

  4. We found clear evidence for information transfer while switching roosts, mainly among juveniles and their genetically identified mothers. Anecdotal observations suggest intentional guidance behaviour by mothers, indicated by repeated commuting flights among the pup and the target roost. Infrequent, short meetings with colony members other than the mother indicate local enhancement at foraging sites, but no intentional information transfer.

  5. Our study illustrates how advances in technology enable researchers to solve long-standing puzzles. Miniaturized proximity sensors facilitate the automated collection of continuous data sets and represent an ideal tool to gain novel insights into the sociobiology of elusive and small-bodied species.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC-ND 4.0 International license.
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Posted September 21, 2018.
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Proximity sensors reveal social information transfer in maternity colonies of Common noctule bats
Simon Ripperger, Linus Günther, Hanna Wieser, Niklas Duda, Martin Hierold, Björn Cassens, Rüdiger Kapitza, Alexander Kölpin, Frieder Mayer
bioRxiv 421974; doi: https://doi.org/10.1101/421974
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Proximity sensors reveal social information transfer in maternity colonies of Common noctule bats
Simon Ripperger, Linus Günther, Hanna Wieser, Niklas Duda, Martin Hierold, Björn Cassens, Rüdiger Kapitza, Alexander Kölpin, Frieder Mayer
bioRxiv 421974; doi: https://doi.org/10.1101/421974

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