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Herbivory in global climate change research: direct effects of rising temperature on insect herbivores

Global Change Biology · 2002 · Vol. 8(1) · pp. 1–16
Jeffery S. BaleGregory J. MastersI. D. HodkinsonC. S. AwmackТ. Martijn BezemerV. K. BrownJennifer ButterfieldAlan BuseJohn CoulsonJ. F. FARRARJ. E. G. GoodR. HarringtonSusan E. HartleyT. Hefin JonesRichard L. LindrothMalcolm C. PressIlias SymrnioudisAllan WattJ. B. Whittaker

Abstract

Abstract This review examines the direct effects of climate change on insect herbivores. Temperature is identified as the dominant abiotic factor directly affecting herbivorous insects. There is little evidence of any direct effects of CO 2 or UVB. Direct impacts of precipitation have been largely neglected in current research on climate change. Temperature directly affects development, survival, range and abundance. Species with a large geographical range will tend to be less affected. The main effect of temperature in temperate regions is to influence winter survival; at more northerly latitudes, higher temperatures extend the summer season, increasing the available thermal budget for growth and reproduction. Photoperiod is the dominant cue for the seasonal synchrony of temperate insects, but their thermal requirements may differ at different times of year. Interactions between photoperiod and temperature determine phenology; the two factors do not necessarily operate in tandem. Insect herbivores show a number of distinct life‐history strategies to exploit plants with different growth forms and strategies, which will be differentially affected by climate warming. There are still many challenges facing biologists in predicting and monitoring the impacts of climate change. Future research needs to consider insect herbivore phenotypic and genotypic flexibility, their responses to global change parameters operating in concert, and awareness that some patterns may only become apparent in the longer term.

Forest Insect Ecology and ManagementSpecies Distribution and Climate ChangePhysiological and biochemical adaptationsHerbivoreClimate changeAbiotic componentTemperate climateEcologyPhenologyBiologyMicroclimateGlobal changeGlobal warming

Funding

  • Natural Environment Research Council
Citations
2,703
FWCI
32.51
field-weighted impact
References
144
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100%
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Citations per year
References
Climate Change 2001: The Scientific Basis
Foreign Affairs · 2002 · 12,979 citations
Monitoring Butterflies for Ecology and Conservation.
Journal of Applied Ecology · 1995 · 1,061 citations
The potential effects of climatic change on agricultural insect pests
Agricultural and Forest Meteorology · 1991 · 442 citations
Herbivory: The Dynamics of Animal-Plant Interactions.
Journal of Ecology · 1984 · 773 citations
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