4.6 Article

Climate change effects on behavioral and physiological ecology of predator-prey interactions: Implications for conservation biological control

Journal

BIOLOGICAL CONTROL
Volume 75, Issue -, Pages 87-96

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.biocontrol.2013.10.001

Keywords

Natural enemies; Agricultural pests; Habitat conservation; Habitat domain; Biological control; Climate adaptation

Funding

  1. Direct For Biological Sciences
  2. Division Of Environmental Biology [1241031] Funding Source: National Science Foundation
  3. Direct For Biological Sciences
  4. Division Of Environmental Biology [1240804, 1240892] Funding Source: National Science Foundation

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Habitat management under the auspices of conservation biological control is a widely used approach to foster conditions that ensure a diversity of predator species can persist spatially and temporally within agricultural landscapes in order to control their prey (pest) species. However, an emerging new factor, global climate change, has the potential to disrupt existing conservation biological control programs. Climate change may alter abiotic conditions such as temperature, precipitation, humidity and wind that in turn could alter the life-cycle timing of predator and prey species and the behavioral nature and strength of their interactions. Anticipating how climate change will affect predator and prey communities represents an important research challenge. We present a conceptual framework-the habitat domain concept-that is useful for understanding contingencies in the nature of predator diversity effects on prey based on predator and prey spatial movement in their habitat. We illustrate how this framework can be used to forecast whether biological control by predators will become more effective or become disrupted due to changing climate. We discuss how changes in predator-prey interactions are contingent on the tolerances of predators and prey species to changing abiotic conditions as determined by the degree of local adaptation and phenotypic plasticity exhibited by species populations. We conclude by discussing research approaches that are needed to help adjust conservation biological control management to deal with a climate future. (C) 2013 Elsevier Inc. All rights reserved.

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