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  5. Signatures of increasing environmental stress in bumblebee wings over the past century: Insights from museum specimens

Signatures of increasing environmental stress in bumblebee wings over the past century: Insights from museum specimens

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Resource type
Journal article
Creator (person)
Arce, Andres N
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Cantwell†Jones, Aoife
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Tansley, Michael
Barnes, Ian
Brace, Selina
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Date published
August 17, 2022
Abstract

Determining when animal populations have experienced stress in the past is fundamental to understanding how risk factors drive contemporary and future species' responses to environmental change. For insects, quantifying stress and associating it with environmental factors has been challenging due to a paucity of time-series data and because detectable population-level responses can show varying lag effects. One solution is to leverage historic entomological specimens to detect morphological proxies of stress experienced at the time stressors emerged, allowing us to more accurately determine population responses. Here we studied specimens of four bumblebee species, an invaluable group of insect pollinators, from five museums collected across Britain over the 20th century. We calculated the degree of fluctuating asymmetry (FA; random deviations from bilateral symmetry) between the right and left forewings as a potential proxy of developmental stress. We: (a) investigated whether baseline FA levels vary between species, and how this compares between the first and second half of the century; (b) determined the extent of FA change over the century in the four bumblebee species, and whether this followed a linear or nonlinear trend; (c) tested which annual climatic conditions correlated with increased FA in bumblebees. Species differed in their baseline FA, with FA being higher in the two species that have recently expanded their ranges in Britain. Overall, FA significantly increased over the century but followed a nonlinear trend, with the increase starting c. 1925. We found relatively warm and wet years were associated with higher FA. Collectively our findings show that FA in bumblebees increased over the 20th century and under weather conditions that will likely increase in frequency with climate change. By plotting FA trends and quantifying the contribution of annual climate conditions on past populations, we provide an important step towards improving our understanding of how environmental factors could impact future populations of wild beneficial insects.

Organisational unit
Natural Sciences
Funder
Funder nameISNIAwards
Natural Environment Research Council
NE/P012914/1
Journal title
Journal of Animal Ecology
Publisher
Wiley
ISSN
0021-8790
eISSN
1365-2656
Date accepted
June 22, 2022
Official URL
https://doi.org/10.1111/1365-2656.13788
Rights statement
In Copyright
Licence
CC BY 4.0
DOI
10.1111/1365-2656.13788
Alternate identifier
1365-2656.13788
Keywords
Procrustes
pollinators
digitisation
entomological collections
fluctuating asymmetry
landmarking
Bombus
climate change
Library of Congress classification
QL
GF
AM
AC
GE
Additional information
Early View
Managed by the British Library and supported by the AHRC

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