Variation in subsurface thermal characteristics of microrefuges used by range core and peripheral populations of the American pika (Ochotona princeps)
Autor: | Thomas J. Rodhouse, Mackenzie R. Jeffress, Matthew Hovland |
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Rok vydání: | 2017 |
Předmět: |
0106 biological sciences
010504 meteorology & atmospheric sciences Range (biology) Population Microclimate 010603 evolutionary biology 01 natural sciences range periphery Pika education National Parks Ecology Evolution Behavior and Systematics Original Research 0105 earth and related environmental sciences Nature and Landscape Conservation education.field_of_study American pika Ecology biology National park temperature Ochotona princeps biology.organism_classification Substrate (marine biology) climate change Habitat microrefuge Environmental science microclimate |
Zdroj: | Ecology and Evolution |
ISSN: | 2045-7758 |
DOI: | 10.1002/ece3.2763 |
Popis: | Microrefuges provide microclimates decoupled from inhospitable regional climate regimes that enable range‐peripheral populations to persist and are important to cold‐adapted species in an era of accelerated climate change. However, identifying and describing the thermal characteristics of microrefuge habitats is challenging, particularly for mobile organisms in cryptic, patchy habitats. We examined variation in subsurface thermal conditions of microrefuge habitats among different rock substrate types used by the American pika (Ochotona princeps), a climate‐sensitive, rock‐dwelling Lagomorph. We compared subsurface temperatures in talus and lava substrates in pika survey sites in two US national park units; one park study area on the range periphery and the other in the range core. We deployed paired sensors to examine within‐site temperature variation. We hypothesized that subsurface temperatures within occupied sites and structurally complex substrates would be cooler in summer and warmer in winter than unoccupied and less complex sites. Although within‐site variability was high, with correlations between paired sensors as low as 47%, we found compelling evidence that pikas occupy microrefuge habitats where subsurface conditions provide more thermal stability than in unoccupied microhabitats. The percentage of days in which microhabitat temperatures were between −2.5 and 25.5°C was significantly higher in occupied sites. Interestingly, thermal conditions were substantially more stable (p |
Databáze: | OpenAIRE |
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