Giant hornet ( Vespa soror ) attacks trigger frenetic antipredator signalling in honeybee ( Apis cerana ) colonies

Author:

Mattila Heather R.1ORCID,Kernen Hannah G.1,Otis Gard W.2,Nguyen Lien T. P.3,Pham Hanh D.4,Knight Olivia M.2,Phan Ngoc T.5

Affiliation:

1. Department of Biological Sciences, Wellesley College, Wellesley, MA, USA

2. School of Environmental Sciences, University of Guelph, Guelph, Ontario, Canada

3. Insect Ecology Department, Institute of Ecology and Biological Resources, Vietnam Academy of Science and Technology, Hanoi, Vietnam

4. Bee Research Centre, National Institute of Animal Sciences, Hanoi, Vietnam

5. Research Center for Tropical Bees and Beekeeping, Vietnam National University of Agriculture, Hanoi, Vietnam

Abstract

Asian honeybees use an impressive array of strategies to protect nests from hornet attacks, although little is understood about how antipredator signals coordinate defences. We compared vibroacoustic signalling and defensive responses of Apis cerana colonies that were attacked by either the group-hunting giant hornet Vespa soror or the smaller, solitary-hunting hornet Vespa velutina . Apis cerana colonies produced hisses, brief stop signals and longer pipes under hornet-free conditions. However, hornet-attack stimuli—and V. soror workers in particular—triggered dramatic increases in signalling rates within colonies. Soundscapes were cacophonous when V. soror predators were directly outside of nests, in part because of frenetic production of antipredator pipes, a previously undescribed signal. Antipredator pipes share acoustic traits with alarm shrieks, fear screams and panic calls of primates, birds and meerkats. Workers making antipredator pipes exposed their Nasonov gland, suggesting the potential for multimodal alarm signalling that warns nestmates about the presence of dangerous hornets and assembles workers for defence. Concurrent observations of nest entrances showed an increase in worker activities that support effective defences against giant hornets. Apis cerana workers flexibly employ a diverse alarm repertoire in response to attack attributes, mirroring features of sophisticated alarm calling in socially complex vertebrates.

Funder

National Geographic Society Committee for Research and Exploration

Vietnam National Foundation for Science and Technology Development

Wellesley College

Publisher

The Royal Society

Subject

Multidisciplinary

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