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A Game Plan for Climate Change

Feb. 27, 2013 — Researchers have successfully piloted a process that enables natural resource managers to take action to conserve particular wildlife, plants and ecosystems as climate changes.


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The Adaptation for Conservation Targets (ACT) framework is a practical approach to assessing how future changes in air and water temperatures, precipitation, stream flows, snowpack, and other environmental conditions might affect natural resources. ACT enables scientists and managers to work hand-in-hand to consider how management actions may need to be adjusted to address those impacts.

"As acceptance of the importance of climate change in influencing conservation and natural resource management increases, ACT can help practitioners connect the dots and integrate climate change into their decisions," said WCS Conservation Scientist, Dr. Molly Cross. "Most importantly, the ACT process allows practitioners to move beyond just talking about impacts to address the 'What do we do about it?' question."

The ACT framework was tested during a series of workshops at four southwestern United States landscapes (see map) that brought together 109 natural resource managers, scientists, and conservation practitioners from 44 local, state, tribal and federal agencies and organizations. The workshops were organized by the Southwest Climate Change Initiative, representing The Nature Conservancy (TNC), the Wildlife Conservation Society (WCS), Climate Assessment for the Southwest (CLIMAS), the Western Water Assessment, the U.S. Forest Service, and the National Center for Atmospheric Research.

One example comes from the Bear River basin in Utah, where workshop participants looked at how warmer air and water temperatures and decreased summer stream flow might affect native Bonneville cutthroat trout habitat and populations. The group strategized that restoring the ability of fish to move between the main stem of the Bear River and cooler tributaries, protecting cold-water habitat, and lowering the depth of outflow from reservoirs to reduce downstream water temperatures could help maintain or increase trout population numbers as climate changes.

Participants in another workshop considered the impacts of reduced snow-pack and greater variability in precipitation on stream flows in the Jemez Mountains of New Mexico. To maintain sufficient water in the system and support aquatic species and riparian vegetation, attendees identified options such as restoring beaver to streams, building artificial structures to increase the storage of water in floodplains, and thinning the density of trees in nearby forests to maximize snowpack retention.

"The ACT process helps workshop participants move beyond the paralysis many feel when tackling what is a new or even intimidating topic by creating a step-by-step process for considering climate change that draws on familiar conservation planning tools," Cross said. "By combining traditional conservation planning with an assessment of climate change impacts that considers multiple future scenarios, ACT helps practitioners lay out how conservation goals and actions may need to be modified to account for climate change."

The results will help land managers as well as people. "Climate change impacts livelihoods and threatens the water supplies of many of our communities," says Terry Sullivan, The Nature Conservancy's New Mexico state director. "We hope that this tool will be utilized to help make decisions which will lead to healthy and sustainable watersheds, and ultimately sustain water supplies for farms and cities."

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The above story is reprinted from materials provided by Wildlife Conservation Society, via Newswise.

Note: Materials may be edited for content and length. For further information, please contact the source cited above.


Journal Reference:

  1. Molly S. Cross, Patrick D. McCarthy, Gregg Garfin, David Gori, Carolyn A.F. Enquist. Accelerating Adaptation of Natural Resource Management to Address Climate Change. Conservation Biology, 2013; 27 (1): 4 DOI: 10.1111/j.1523-1739.2012.01954.x
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