The behavioural responses of bumblebees Bombus terrestris to simulated rain

Author:

Reeves Laura A.12ORCID,Jarvis Ellie M.13ORCID,Lawson David A.1ORCID,Rands Sean A.1ORCID

Affiliation:

1. School of Biological Science, University of Bristol , Bristol BS8 1TQ, UK

2. Centre for Agri-Environmental Research, School of Agriculture, Policy and Development, University of Reading , Reading RG6 6AJ, UK

3. Milner Centre for Evolution, Department of Life Sciences, University of Bath , Bath BA2 7AY, UK

Abstract

Bumblebee activity typically decreases during rainfall, putting them under the threat of the increased frequency of precipitation due to climate change. A novel rain machine was used within a flight arena to observe the behavioural responses of bumblebees ( Bombus terrestris ) to simulated rain at both a colony and individual level. During rainfall, a greater proportion of workers left the arena than entered, the opposite of which was seen during dry periods, implying that they compensate for their lack of activity when conditions improve. The proportion of workers flying and foraging decreased while resting increased in rain. This pattern reversed during dry periods, providing further evidence for compensatory activity. The increase in resting behaviour during rain is thought to evade the high energetic costs of flying while wet without unnecessarily returning to the nest. This effect was not repeated in individual time budgets, measured with lone workers, suggesting that the presence of conspecifics accelerates the decision of their behavioural response, perhaps via local enhancement. Bumblebees probably use social cues to strategize their energetic expenditure during precipitation, allowing them to compensate for the reduced foraging activity during rainfall when conditions improve.

Publisher

The Royal Society

Reference88 articles.

1. IPCC . 2021 Climate change 2021: the physical science basis. contribution of working group I to the sixth assessment report of the Intergovernmental Panel on Climate Change. Cambridge, UK: Cambridge University Press.

2. A daily weather generator for use in climate change studies

3. The response of precipitation characteristics to global warming from climate projections

4. Observed and simulated precipitation responses in wet and dry regions 1850–2100

5. Heavy precipitation in a changing climate: Does short-term summer precipitation increase faster?

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