Will climate change be beneficial or detrimental to the invasive swede midge in North America? Contrasting predictions using climate projections from different general circulation models

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Will climate change be beneficial or detrimental to the invasive swede midge in North America? Contrasting predictions using climate projections from different general circulation models

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dc.contributor.author Mika, Anna M.
dc.contributor.author Weiss, Ross M.
dc.contributor.author Olfert, Owen
dc.contributor.author Hallett, Rebecca H.
dc.contributor.author Newman, Jonathan A.
dc.date.accessioned 2011-03-10T00:05:08Z
dc.date.available 2011-03-10T00:05:08Z
dc.date.issued 2008-02-01
dc.identifier.citation Mika, A. M., Weiss, R. M., Olfert, O., Hallett, R. H., and Newman, J. A. "Will climate change be beneficial or detrimental to the invasive swede midge in North America? Contrasting predictions using climate projections from different general circulation models." Global Climate Biology 14.8 (2008): 1721-1733
dc.identifier.uri http://hdl.handle.net/10214/2489
dc.description.abstract Climate change may dramatically affect the distribution and abundance of organisms. With the world’s population size expected to increase significantly during the next 100 years, we need to know how climate change might impact our food production systems. In particular, we need estimates of how future climate might alter the distribution of agricultural pests. We used the climate projections from two general circulation models(GCMs) of global climate, the Canadian Centre for Climate Modelling and Analysis GCM (CGCM2) and the Hadley Centre model (HadCM3), for the A2 and B2 scenarios from the Special Report on Emissions Scenarios in conjunction with a previously published bioclimatic envelope model (BEM) to predict the potential changes in distribution and abundance of the swede midge, Contarinia nasturtii, in North America. The BEM in conjunction with either GCM predicted that C. nasturtii would spread from its current initial invasion in southern Ontario and northwestern New York State into the Canadian prairies, northern Canada, and midwestern United States, but the magnitude of risk depended strongly on the GCM and the scenario used. When the CGCM2 projections were used, the BEM predicted an extensive shift in the location of the midges’ climatic envelope through most of Ontario, Quebec, and the maritime and prairie provinces by the 2080s. In the United States, C. nasturtii was predicted to spread to all the Great Lake states, into midwestern states as far south as Colorado, and west into Washington State. When the HadCM3 was applied, southern Ontario, Saskatchewan, and Washington State were not as favourable for C. nasturtii by the 2080s. Indeed, when used with the HadCM3 climate projections, the BEM predicted the virtual disappearance of ‘very favourable’ regions for C. nasturtii. The CGCM2 projections generally caused the BEM to predict a small increase in the mean number of midge generations throughout the course of the century, whereas, the HadCM3 projections resulted in roughly the same mean number of generations but decreased variance. Predictions of the likely potential of C. nasturtii spatial spread are thus strongly dependent on the source of climate projections. This study illustrates the importance of using multiple GCMs in combination with multiple scenarios when studying the potential for spatial spread of an organism in response to climate change.
dc.language.iso en en_US
dc.publisher Global Change Biology en_US
dc.subject agricultural pest en_US
dc.subject bioclimatic envelope model en_US
dc.subject climate change en_US
dc.subject CLIMEX en_US
dc.subject elevated temperature en_US
dc.subject global warming en_US
dc.subject precipitation en_US
dc.title Will climate change be beneficial or detrimental to the invasive swede midge in North America? Contrasting predictions using climate projections from different general circulation models en_US
dc.type Article en_US


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