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Landscapes

From boreal forests to coral reefs, the United States is home to a plethora of diverse ecosystems, each of which faces different challenges under climate change. CASC-supported scientists are examining how landscapes of all types are being affected by changing temperature and precipitation patterns and how managers can best facilitate climate adaptation. Browse our projects by landscape below. 

Filter Total Items: 332

Science-Driven Methods for Scaling Afforestation of Dry Grass-Dominated Landscapes

Project Overview Restoring grass-dominated landscapes into resilient forested ecosystems is a key strategy for addressing the growing risk of wildfire Hawaiʻi. However, conventional afforestation efforts typically require regular maintenance due to the persistent invasion of grasses in planted areas. In collaboration with Native Hawaiian Organizations, researchers supported by this...
Science-Driven Methods for Scaling Afforestation of Dry Grass-Dominated Landscapes

Science-Driven Methods for Scaling Afforestation of Dry Grass-Dominated Landscapes

Project Overview Restoring grass-dominated landscapes into resilient forested ecosystems is a key strategy for addressing the growing risk of wildfire Hawaiʻi. However, conventional afforestation efforts typically require regular maintenance due to the persistent invasion of grasses in planted areas. In collaboration with Native Hawaiian Organizations, researchers supported by this Pacific Islands
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Using Plant Functional Traits to Design and Restore Resilient Landscapes in Guam

Project Overview Guam’s forests are vital to the ecosystem and local communities, but they face threats from wildfires, water quality, and invasive species, among others. To restore these ecosystems, researchers supported by this Pacific Islands CASC project will research the roles of native plants by identifying their “functional traits,” and using that knowledge to select species for
Using Plant Functional Traits to Design and Restore Resilient Landscapes in Guam

Using Plant Functional Traits to Design and Restore Resilient Landscapes in Guam

Project Overview Guam’s forests are vital to the ecosystem and local communities, but they face threats from wildfires, water quality, and invasive species, among others. To restore these ecosystems, researchers supported by this Pacific Islands CASC project will research the roles of native plants by identifying their “functional traits,” and using that knowledge to select species for
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Developing science syntheses to facilitate climate-informed land management decisions and NEPA analyses on rangelands in the sagebrush biome

The National Environmental Policy Act (NEPA) requires federal public land managers to assess potential environmental impacts of proposed actions. The USGS, Bureau of Land Management, US Fish and Wildlife Service, Colorado State University, and North Central Climate Adaptation Science Center are working together to develop science syntheses that can facilitate considerations of climate change in...
Developing science syntheses to facilitate climate-informed land management decisions and NEPA analyses on rangelands in the sagebrush biome

Developing science syntheses to facilitate climate-informed land management decisions and NEPA analyses on rangelands in the sagebrush biome

The National Environmental Policy Act (NEPA) requires federal public land managers to assess potential environmental impacts of proposed actions. The USGS, Bureau of Land Management, US Fish and Wildlife Service, Colorado State University, and North Central Climate Adaptation Science Center are working together to develop science syntheses that can facilitate considerations of climate change in...
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Soil-climate for Managing Sagebrush Ecosystems

Soil-climate describes the temperature and moisture conditions important for plant growth and function. Soil condition patterns determine which vegetation is most abundant, thus controlling which habitats, invasive species, fuels, and economic activities are present in a region. Here, we use a model to simulate the vertical movement of water in a soil profile to provide insights into landscape...
Soil-climate for Managing Sagebrush Ecosystems

Soil-climate for Managing Sagebrush Ecosystems

Soil-climate describes the temperature and moisture conditions important for plant growth and function. Soil condition patterns determine which vegetation is most abundant, thus controlling which habitats, invasive species, fuels, and economic activities are present in a region. Here, we use a model to simulate the vertical movement of water in a soil profile to provide insights into landscape...
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Mapping Grassland Bird Community Distribution under a Changing Landscape

Researchers from the U.S. Geological Survey, the U.S. Department of Agriculture-Agricultural Research Service, and University of Arizona are studying the distribution of grassland bird communities across the western Great Plains to anticipate how species distributions may respond to a changing landscape.
Mapping Grassland Bird Community Distribution under a Changing Landscape

Mapping Grassland Bird Community Distribution under a Changing Landscape

Researchers from the U.S. Geological Survey, the U.S. Department of Agriculture-Agricultural Research Service, and University of Arizona are studying the distribution of grassland bird communities across the western Great Plains to anticipate how species distributions may respond to a changing landscape.
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A Decision Support Tool for Prairie Dog and Cattle Coexistence in a Changing Climate

Project Overview Prairie dog colonies in North America’s Central Grasslands undergo cycles of collapse and recovery caused by the non-native sylvatic plague, and each phase of the cycle negatively affects wildlife or livestock. Researchers supported by this North Central-CASC project will develop a decision-support web tool for users to predict prairie dog colony dynamics under changing...
A Decision Support Tool for Prairie Dog and Cattle Coexistence in a Changing Climate

A Decision Support Tool for Prairie Dog and Cattle Coexistence in a Changing Climate

Project Overview Prairie dog colonies in North America’s Central Grasslands undergo cycles of collapse and recovery caused by the non-native sylvatic plague, and each phase of the cycle negatively affects wildlife or livestock. Researchers supported by this North Central-CASC project will develop a decision-support web tool for users to predict prairie dog colony dynamics under changing climatic
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Advancing Climate Change Adaptation Strategies for High Elevation and Endangered Lowland Coquí Frogs in the U.S. Caribbean

Amphibians in the US Caribbean, like the well-known coquí frog, are particularly vulnerable to climate change. Coquí frogs are represented by 17 species across Puerto Rico and US Virgin Islands and include several mountainous and coastal species that are threatened by extreme heat and drying, loss of coastal freshwater marshes through saltwater intrusion, or both. Over the past decade...
Advancing Climate Change Adaptation Strategies for High Elevation and Endangered Lowland Coquí Frogs in the U.S. Caribbean

Advancing Climate Change Adaptation Strategies for High Elevation and Endangered Lowland Coquí Frogs in the U.S. Caribbean

Amphibians in the US Caribbean, like the well-known coquí frog, are particularly vulnerable to climate change. Coquí frogs are represented by 17 species across Puerto Rico and US Virgin Islands and include several mountainous and coastal species that are threatened by extreme heat and drying, loss of coastal freshwater marshes through saltwater intrusion, or both. Over the past decade, the
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Assessing the Impacts of Rangeland Restoration on Carbon Sequestration and Co-Benefits for Drought Resilience in the Sagebrush Steppe and Mixed Grass Prairie

Invasions of exotic annual grasses (EAGs like cheatgrass have caused major losses of native shrubs and grasses in western U.S. rangelands. They also decrease the productivity and carbon storage in these ecosystems, which is expected to create dryer soils that may cause further losses in plant productivity. This cycle is the hallmark of desertification – or, fertile lands turning into...
Assessing the Impacts of Rangeland Restoration on Carbon Sequestration and Co-Benefits for Drought Resilience in the Sagebrush Steppe and Mixed Grass Prairie

Assessing the Impacts of Rangeland Restoration on Carbon Sequestration and Co-Benefits for Drought Resilience in the Sagebrush Steppe and Mixed Grass Prairie

Invasions of exotic annual grasses (EAGs like cheatgrass have caused major losses of native shrubs and grasses in western U.S. rangelands. They also decrease the productivity and carbon storage in these ecosystems, which is expected to create dryer soils that may cause further losses in plant productivity. This cycle is the hallmark of desertification – or, fertile lands turning into deserts.
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Climate Adaptation in North Central Mountain Ecosystems

Mountain ecosystems are prioritized by the North Central CASC due to the provided water resources, recreation opportunities, and endemic biodiversity. Mountain ecosystems are vulnerable to climate change due to elevation-dependent warming, loss of snowpack, reduction in physical area at higher elevations, and general sensitivity of alpine species to climate. Current climate adaptation...
Climate Adaptation in North Central Mountain Ecosystems

Climate Adaptation in North Central Mountain Ecosystems

Mountain ecosystems are prioritized by the North Central CASC due to the provided water resources, recreation opportunities, and endemic biodiversity. Mountain ecosystems are vulnerable to climate change due to elevation-dependent warming, loss of snowpack, reduction in physical area at higher elevations, and general sensitivity of alpine species to climate. Current climate adaptation strategies
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Climate Effects on Prescribed Fire Implementation and Efficacy in Northern Mixed-Grass Prairie

Prescribed burning – planned, controlled fires conducted under weather and fuel conditions designed for safety and effectiveness – is a common practice used to maintain and restore native prairies in the Northern Great Plains. However, climate change will affect the number of days in a year, and when, suitable conditions for prescribed fires occur. For instance, warmer temperatures may...
Climate Effects on Prescribed Fire Implementation and Efficacy in Northern Mixed-Grass Prairie

Climate Effects on Prescribed Fire Implementation and Efficacy in Northern Mixed-Grass Prairie

Prescribed burning – planned, controlled fires conducted under weather and fuel conditions designed for safety and effectiveness – is a common practice used to maintain and restore native prairies in the Northern Great Plains. However, climate change will affect the number of days in a year, and when, suitable conditions for prescribed fires occur. For instance, warmer temperatures may shift
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Climate Impact Summaries for Rare-Plant Biodiversity in the Southeastern U.S.

The southeastern U.S. is home to many rare plant species, some at risk of extinction. A new national list has identified the top plant “Species of Greatest Conservation Need” (SGCN) across the region which can help southeastern states update their State Wildlife Action Plans (SWAPs) to include plants for the first time. In partnership with the Southeast Plant Conservation Alliance...
Climate Impact Summaries for Rare-Plant Biodiversity in the Southeastern U.S.

Climate Impact Summaries for Rare-Plant Biodiversity in the Southeastern U.S.

The southeastern U.S. is home to many rare plant species, some at risk of extinction. A new national list has identified the top plant “Species of Greatest Conservation Need” (SGCN) across the region which can help southeastern states update their State Wildlife Action Plans (SWAPs) to include plants for the first time. In partnership with the Southeast Plant Conservation Alliance, NatureServe
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Climate Smart Restoration: Establishing Baselines and Developing Adaptive Management Approaches

In Hawaiʻi, a large percentage of historically forested areas have been lost, driven in part by changes in land use, such as the conversion of forests into pastures for livestock. This transformation has not only resulted in widespread loss of native biodiversity and important ecosystem functions but has also increased the risk of fire on the landscape. Though targeted restoration...
Climate Smart Restoration: Establishing Baselines and Developing Adaptive Management Approaches

Climate Smart Restoration: Establishing Baselines and Developing Adaptive Management Approaches

In Hawaiʻi, a large percentage of historically forested areas have been lost, driven in part by changes in land use, such as the conversion of forests into pastures for livestock. This transformation has not only resulted in widespread loss of native biodiversity and important ecosystem functions but has also increased the risk of fire on the landscape. Though targeted restoration efforts have the
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