A systematic review of ecological attributes that confer resilience to climate change in environmental restoration

被引:138
|
作者
Timpane-Padgham, Britta L. [1 ,2 ]
Beechie, Tim [3 ]
Klinger, Terrie [1 ]
机构
[1] Univ Washington, Sch Marine & Environm Affairs, Seattle, WA 98195 USA
[2] NOAA, Ocean Associates Inc, Northwest Fisheries Sci Ctr, Natl Marine Fisheries Serv,Natl Ocean & Atmospher, Seattle, WA USA
[3] NOAA, Fish Ecol Div, Northwest Fisheries Sci Ctr, Natl Marine Fisheries Serv,Natl Ocean & Atmospher, Seattle, WA USA
来源
PLOS ONE | 2017年 / 12卷 / 03期
关键词
EELGRASS ZOSTERA-MARINA; LONG-TERM IMPACTS; ECOSYSTEM SERVICES; GENETIC DIVERSITY; MACROINVERTEBRATE ASSEMBLAGES; COMMUNITY PERSISTENCE; FUNCTIONAL RESILIENCE; RESPONSE DIVERSITY; RIPARIAN CORRIDORS; CORAL-REEFS;
D O I
10.1371/journal.pone.0173812
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Ecological restoration is widely practiced as a means of rehabilitating ecosystems and habitats that have been degraded or impaired through human use or other causes. Restoration practices now are confronted by climate change, which has the potential to influence long-term restoration outcomes. Concepts and attributes from the resilience literature can help improve restoration and monitoring efforts under changing climate conditions. We systematically examined the published literature on ecological resilience to identify biological, chemical, and physical attributes that confer resilience to climate change. We identified 45 attributes explicitly related to climate change and classified them as individual-(9), population-(6), community-(7), ecosystem-(7), or process-level attributes (16). Individual studies defined resilience as resistance to change or recovery from disturbance, and only a few studies explicitly included both concepts in their definition of resilience. We found that individual and population attributes generally are suited to species-or habitat-specific restoration actions and applicable at the population scale. Community attributes are better suited to habitat-specific restoration at the site scale, or system-wide restoration at the ecosystem scale. Ecosystem and process attributes vary considerably in their type and applicability. We summarize these relationships in a decision support table and provide three example applications to illustrate how these classifications can be used to prioritize climate change resilience attributes for specific restoration actions. We suggest that (1) including resilience as an explicit planning objective could increase the success of restoration projects, (2) considering the ecological context and focal scale of a restoration action is essential in choosing appropriate resilience attributes, and (3) certain ecological attributes, such as diversity and connectivity, are more commonly considered to confer resilience because they apply to a wide variety of species and ecosystems. We propose that identifying sources of ecological resilience is a critical step in restoring ecosystems in a changing climate.
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页数:23
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