Demographic compensation and tipping points in climate-induced range shifts
Top Cited Papers
- 20 October 2010
- journal article
- Published by Springer Nature in Nature
- Vol. 467 (7318) , 959-962
- https://doi.org/10.1038/nature09439
Abstract
To persist, species are expected to shift their geographical ranges polewards or to higher elevations as the Earth's climate warms. However, although many species' ranges have shifted in historical times, many others have not, or have shifted only at the high-latitude or high-elevation limits, leading to range expansions rather than contractions. Given these idiosyncratic responses to climate warming, and their varied implications for species' vulnerability to climate change, a critical task is to understand why some species have not shifted their ranges, particularly at the equatorial or low-elevation limits, and whether such resilience will last as warming continues. Here we show that compensatory changes in demographic rates are buffering southern populations of two North American tundra plants against the negative effects of a warming climate, slowing their northward range shifts, but that this buffering is unlikely to continue indefinitely. Southern populations of both species showed lower survival and recruitment but higher growth of individual plants, possibly owing to longer, warmer growing seasons. Because of these and other compensatory changes, the population growth rates of southern populations are not at present lower than those of northern ones. However, continued warming may yet prove detrimental, as most demographic rates that improved in moderately warmer years declined in the warmest years, with the potential to drive future population declines. Our results emphasize the need for long-term, range-wide measurement of all population processes to detect demographic compensation and to identify nonlinear responses that may lead to sudden range shifts as climatic tipping points are exceeded.Keywords
This publication has 21 references indexed in Scilit:
- The velocity of climate changeNature, 2009
- Impact of a Century of Climate Change on Small-Mammal Communities in Yosemite National Park, USAScience, 2008
- Global Warming, Elevational Range Shifts, and Lowland Biotic Attrition in the Wet TropicsScience, 2008
- A Significant Upward Shift in Plant Species Optimum Elevation During the 20th CenturyScience, 2008
- Climate change threats to plant diversity in EuropeProceedings of the National Academy of Sciences, 2005
- Extinction risk from climate changeNature, 2004
- A globally coherent fingerprint of climate change impacts across natural systemsNature, 2003
- Poleward shifts in geographical ranges of butterfly species associated with regional warmingNature, 1999
- Birds extend their ranges northwardsNature, 1999
- Climate effects on mountain plantsNature, 1994