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Detection and attribution of the effects of climate change on bat distributions over the last 50 years

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  • Jianguo Wu

    (Chinese Research Academy of Environmental Sciences)

Abstract

We evaluated the relationship between changes in bat distribution and climate in China over the past 50 years and examined whether the changes could be attributed to climate change. We used long-term distribution records for 17 bat species together with grey relational analysis, the fuzzy-set classification technique, a consistency index, and attribution methods. Over the past 50 years, bat species distributions have primarily shifted northward, and most of these changes are correlated with the thermal index. In response to climatic factors over the past 50 years, the ranges and distribution centers of particular bat species have shifted to the north or to the west. The observed and predicted changes in the distributions were highly consistent for certain species. Changes in the northern limit or the center of the distribution can be attributed to climate change for nearly half of the species studied.

Suggested Citation

  • Jianguo Wu, 2016. "Detection and attribution of the effects of climate change on bat distributions over the last 50 years," Climatic Change, Springer, vol. 134(4), pages 681-696, February.
  • Handle: RePEc:spr:climat:v:134:y:2016:i:4:d:10.1007_s10584-015-1543-7
    DOI: 10.1007/s10584-015-1543-7
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    1. Dáithí Stone & Maximilian Auffhammer & Mark Carey & Gerrit Hansen & Christian Huggel & Wolfgang Cramer & David Lobell & Ulf Molau & Andrew Solow & Lourdes Tibig & Gary Yohe, 2013. "The challenge to detect and attribute effects of climate change on human and natural systems," Climatic Change, Springer, vol. 121(2), pages 381-395, November.
    2. Terry L. Root & Jeff T. Price & Kimberly R. Hall & Stephen H. Schneider & Cynthia Rosenzweig & J. Alan Pounds, 2003. "Fingerprints of global warming on wild animals and plants," Nature, Nature, vol. 421(6918), pages 57-60, January.
    3. Camille Parmesan & Gary Yohe, 2003. "A globally coherent fingerprint of climate change impacts across natural systems," Nature, Nature, vol. 421(6918), pages 37-42, January.
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