Folders: ROOT > ScienceBase Catalog > LC MAP - Landscape Conservation Management and Analysis Portal > Great Basin Landscape Conservation Cooperative > Great Basin LCC Supported Research > Research and Publications Authored and Supported by GBLCC Staff > Report: Using resistance and resilience concepts to reduce impacts of invasive annual grasses and altered fire regimes on the sagebrush ecosystem and greater sage-grouse: A strategic multi-scale approach. > Data > Journal Article: Soil Temperature and Moisture Regimes across Sage-Grouse Range > Resilience and Resistance Classes for Sage-Grouse Management Zones ( Show all descendants )
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ROOT _ScienceBase Catalog __LC MAP - Landscape Conservation Management and Analysis Portal ___Great Basin Landscape Conservation Cooperative ____Great Basin LCC Supported Research _____Research and Publications Authored and Supported by GBLCC Staff ______Report: Using resistance and resilience concepts to reduce impacts of invasive annual grasses and altered fire regimes on the sagebrush ecosystem and greater sage-grouse: A strategic multi-scale approach. _______Data ________Journal Article: Soil Temperature and Moisture Regimes across Sage-Grouse Range _________Resilience and Resistance Classes for Sage-Grouse Management Zones Filters
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Emerging applications of ecosystem resilience and resistance concepts in sagebrush ecosystems allow managers to better predict and mitigate impacts of wildfire and invasive annual grasses. Soil temperature and moisture strongly influence the kind and amount of vegetation, and consequently, are closely tied to sagebrush ecosystem resilience and resistance (Chambers et al. 2014, 2016). Soil taxonomic temperature and moisture regimes can be used as indicators of resilience and resistance at landscape scales to depict environmental gradients in sagebrush ecosystems that range from cold/cool-moist sites to warm-dry sites. We aggregated soil survey spatial and tabular data to facilitate broad-scale analyses of resilience...
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