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Community dynamics can modify the direction of simulated warming effects on crop yield

Gillespie, Mark; Jacometti, Marco; Tylianakis, Jason M.; Wratten, Steve D.
Journal article, Peer reviewed
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Gillespie.pdf (1.722Mb)
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http://hdl.handle.net/11250/2579506
Utgivelsesdato
2018
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  • Import fra CRIStin [4095]
  • Institutt for miljø- og naturvitskap [569]
Originalversjon
Gillespie, M. A. K., Jacometti, M., Tylianakis, J. M., & Wratten, S. D. (2018). Community dynamics can modify the direction of simulated warming effects on crop yield. PLoS ONE, 13(11), 1-9.   10.1371/journal.pone.0207796
Sammendrag
Climate change affects agriculture through a range of direct and indirect pathways. These include direct changes to impacts of pests and diseases on crops and indirect effects produced by interactions between organisms. It remains unclear whether the net effects of these biotic influences will be beneficial or detrimental to crop yield because few studies consider multiple interactions within communities and the net effects of these on community structure and yield. In this study, we created two experimental grapevine communities in field cages, and quantified direct and indirect effects of key pest and disease species under simulated climate change conditions (elevated temperature and reduced humidity). We found that the net impact of simulated climate change on total yield differed for the two communities, with increased yield in one community and no effect in the other. These effects, and the interactions between pests and pathogens, may also have been affected by the prevailing abiotic conditions, and we discuss how these may contribute to our findings. These results demonstrate that future research should consider more of the interactions between key organisms affecting crops under varying abiotic conditions to help generate future recommendations for adapting to the effects of climate change.
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PLOS
Tidsskrift
PLoS ONE
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© 2018 Gillespie et al.

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