Movement, impacts and management of plant distributions in response to climate change: Insights from invasions

Caplat, P., Cheptou, P. -O., Diez, J., Guisan, A., Larson, B. M. H., Macdougall, A. S., Peltzer, D. A., Richardson, D. M., Shea, K., van Kleunen, M., Zhang, R. and Buckley, Y. M. (2013) Movement, impacts and management of plant distributions in response to climate change: Insights from invasions. Oikos, 122 9: 1265-1274. doi:10.1111/j.1600-0706.2013.00430.x

Author Caplat, P.
Cheptou, P. -O.
Diez, J.
Guisan, A.
Larson, B. M. H.
Macdougall, A. S.
Peltzer, D. A.
Richardson, D. M.
Shea, K.
van Kleunen, M.
Zhang, R.
Buckley, Y. M.
Title Movement, impacts and management of plant distributions in response to climate change: Insights from invasions
Journal name Oikos   Check publisher's open access policy
ISSN 0030-1299
Publication date 2013-09
Sub-type Article (original research)
DOI 10.1111/j.1600-0706.2013.00430.x
Volume 122
Issue 9
Start page 1265
End page 1274
Total pages 10
Place of publication Malden, MA, United States
Publisher Wiley-Blackwell
Collection year 2014
Language eng
Abstract Prediction and management of species responses to climate change is an urgent but relatively young research field. Therefore, climate change ecology must by necessity borrow from other fields. Invasion ecology is particularly well-suited to informing climate change ecology because both invasion ecology and climate change ecology address the trajectories of rapidly changing novel systems. Here we outline the broad range of active research questions in climate change ecology where research from invasion ecology can stimulate advances. We present ideas for how concepts, case-studies and methodology from invasion ecology can be adapted to improve prediction and management of species responses to climate change. A major challenge in this era of rapid climate change is to predict changes in species distributions and their impacts on ecosystems, and, if necessary, to recommend management strategies for maintenance of biodiversity or ecosystem services. Biological invasions, studied in most biomes of the world, can provide useful analogs for some of the ecological consequences of species distribution shifts in response to climate change. Invasions illustrate the adaptive and interactive responses that can occur when species are confronted with new environmental conditions. Invasion ecology complements climate change research and provides insights into the following questions: 1) how will species distributions respond to climate change? 2) how will species movement affect recipient ecosystems? And 3) should we, and if so how can we, manage species and ecosystems in the face of climate change? Invasion ecology demonstrates that a trait-based approach can help to predict spread speeds and impacts on ecosystems, and has the potential to predict climate change impacts on species ranges and recipient ecosystems. However, there is a need to analyse traits in the context of life-history and demography, the stage in the colonisation process (e.g. spread, establishment or impact), the distribution of suitable habitats in the landscape, and the novel abiotic and biotic conditions under which those traits are expressed. As is the case with climate change, invasion ecology is embedded within complex societal goals. Both disciplines converge on similar questions of 'when to intervene?' and 'what to do?' which call for a better understanding of the ecological processes and social values associated with changing ecosystems.
Q-Index Code C1
Q-Index Status Confirmed Code
Institutional Status UQ

Document type: Journal Article
Sub-type: Article (original research)
Collections: Official 2014 Collection
School of Biological Sciences Publications
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Citation counts: TR Web of Science Citation Count  Cited 19 times in Thomson Reuters Web of Science Article | Citations
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