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Wildlife and Plants

Wildlife and plants face many threats from climate change, including increased competition from invasive species, loss of access to freshwater, and shifting air and water temperatures. The CASCs study how fish, wildlife, and plants are responding to climate change and how resource managers can promote species' adaptation and resilience in the face of shifting conditions. Browse our projects.

Filter Total Items: 530

Identifying Past and Future Climate Change Refugia for Midwestern Birds

Project Overview In the Midwest, climate change is forcing birds to shift their ranges, raising concerns about how well protected areas provide refuge for vulnerable bird species. Researchers supported by this Midwest CASC project will use two decades of bird monitoring data to evaluate how protected areas in the Upper Great Lakes region support birds now and in the future under changing...
Identifying Past and Future Climate Change Refugia for Midwestern Birds

Identifying Past and Future Climate Change Refugia for Midwestern Birds

Project Overview In the Midwest, climate change is forcing birds to shift their ranges, raising concerns about how well protected areas provide refuge for vulnerable bird species. Researchers supported by this Midwest CASC project will use two decades of bird monitoring data to evaluate how protected areas in the Upper Great Lakes region support birds now and in the future under changing climate
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Identifying the Environmental Limits of Aquatic Species in Prairie Streams to Build Climate Resilience

Project Overview Climate change and human activities are threatening many sensitive aquatic species in prairie streams across the Great Plains region. Researchers supported by this North Central CASC project will combine and analyze data collected independently by Great Plains states to identify thresholds of environmental change that may lead to species loss and changes in aquatic...
Identifying the Environmental Limits of Aquatic Species in Prairie Streams to Build Climate Resilience

Identifying the Environmental Limits of Aquatic Species in Prairie Streams to Build Climate Resilience

Project Overview Climate change and human activities are threatening many sensitive aquatic species in prairie streams across the Great Plains region. Researchers supported by this North Central CASC project will combine and analyze data collected independently by Great Plains states to identify thresholds of environmental change that may lead to species loss and changes in aquatic communities
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Impacts to Ecosystems and Fisheries in Northwest Alaska from “Rusting Rivers”

Project Overview In Northwest Alaska, “rusting rivers” are becoming increasingly apparent as climate change causes ancient spring seeps to re-emerge after permafrost melts. While they have become more common over the past few years, very little is understood about their impacts on stream food webs. Researchers supported by this Alaska CASC project will bridge the knowledge gap by...
Impacts to Ecosystems and Fisheries in Northwest Alaska from “Rusting Rivers”

Impacts to Ecosystems and Fisheries in Northwest Alaska from “Rusting Rivers”

Project Overview In Northwest Alaska, “rusting rivers” are becoming increasingly apparent as climate change causes ancient spring seeps to re-emerge after permafrost melts. While they have become more common over the past few years, very little is understood about their impacts on stream food webs. Researchers supported by this Alaska CASC project will bridge the knowledge gap by providing
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Increasing Giant Sequoia Reforestation Success after Catastrophic Wildfire Using Soil and Microbial Indicators

Recent catastrophic droughts and wildfires have killed almost 20% of mature giant sequoia trees across California, and it is uncertain whether natural seedling regeneration will be enough to restore these forests, especially in severely burned areas. Researchers supported by this Southwest CASC project will assess whether soil conditions, such as moisture and soil microbial communities...
Increasing Giant Sequoia Reforestation Success after Catastrophic Wildfire Using Soil and Microbial Indicators

Increasing Giant Sequoia Reforestation Success after Catastrophic Wildfire Using Soil and Microbial Indicators

Recent catastrophic droughts and wildfires have killed almost 20% of mature giant sequoia trees across California, and it is uncertain whether natural seedling regeneration will be enough to restore these forests, especially in severely burned areas. Researchers supported by this Southwest CASC project will assess whether soil conditions, such as moisture and soil microbial communities can
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Informing Management Options for Grizzly Bears in a Changing Greater Yellowstone Ecosystem

Project Overview The iconic grizzly bear of the Greater Yellowstone Ecosystem has exhibited a remarkable recovery in response to concerted conservation actions implemented since its listing as threatened under the Endangered Species Act in 1975. However, information regarding the potential effects and timing of climate change in conjunction with increasing human recreation and...
Informing Management Options for Grizzly Bears in a Changing Greater Yellowstone Ecosystem

Informing Management Options for Grizzly Bears in a Changing Greater Yellowstone Ecosystem

Project Overview The iconic grizzly bear of the Greater Yellowstone Ecosystem has exhibited a remarkable recovery in response to concerted conservation actions implemented since its listing as threatened under the Endangered Species Act in 1975. However, information regarding the potential effects and timing of climate change in conjunction with increasing human recreation and development will be
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Leveraging Existing Data to Assess the Vulnerability of Native Salmonid Populations in the Greater Yellowstone Area

Project Overview: Native Yellowstone cutthroat trout and mountain whitefish in the Greater Yellowstone Ecosystem (GYA) are ecologically and socio-economically important species, but are threatened by drought, rising water temperatures, habitat loss, and non-native species. Researchers supported by this North Central CASC project will use climate data and extensive population records to...
Leveraging Existing Data to Assess the Vulnerability of Native Salmonid Populations in the Greater Yellowstone Area

Leveraging Existing Data to Assess the Vulnerability of Native Salmonid Populations in the Greater Yellowstone Area

Project Overview: Native Yellowstone cutthroat trout and mountain whitefish in the Greater Yellowstone Ecosystem (GYA) are ecologically and socio-economically important species, but are threatened by drought, rising water temperatures, habitat loss, and non-native species. Researchers supported by this North Central CASC project will use climate data and extensive population records to assess the
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Linking Snow and Subsurface Microclimatic Refugia to Assess Climate Threats to Pygmy Rabbits

Project Overview: Extreme weather conditions may disrupt key life cycle events for pygmy rabbits, a species that relies on snow and underground burrows for protection from predators and extreme cold. Researchers supported by this Northwest CASC project will use models to understand how different snow patterns and subsurface temperatures will impact pygmy rabbit habitats. Project outcomes...
Linking Snow and Subsurface Microclimatic Refugia to Assess Climate Threats to Pygmy Rabbits

Linking Snow and Subsurface Microclimatic Refugia to Assess Climate Threats to Pygmy Rabbits

Project Overview: Extreme weather conditions may disrupt key life cycle events for pygmy rabbits, a species that relies on snow and underground burrows for protection from predators and extreme cold. Researchers supported by this Northwest CASC project will use models to understand how different snow patterns and subsurface temperatures will impact pygmy rabbit habitats. Project outcomes will
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Mapping Habitat Connectivity and Climate Refugia in Headwater Ecosystems to Support Amphibian Conservation

Project Overview Forests in the Pacific Northwest support an extensive network of headwater streams and critical habitats for over 50 amphibian species, but face challenges from historical resource extraction, forest management, and climate change. Researchers supported by this Northwest CASC project will identify and map climate refugia to guide conservation strategies for at-risk...
Mapping Habitat Connectivity and Climate Refugia in Headwater Ecosystems to Support Amphibian Conservation

Mapping Habitat Connectivity and Climate Refugia in Headwater Ecosystems to Support Amphibian Conservation

Project Overview Forests in the Pacific Northwest support an extensive network of headwater streams and critical habitats for over 50 amphibian species, but face challenges from historical resource extraction, forest management, and climate change. Researchers supported by this Northwest CASC project will identify and map climate refugia to guide conservation strategies for at-risk amphibians
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Monitoring of the ʻEkupuʻu (Laysan finch) on Eastern Island, Midway Atoll National Wildlife Refuge

Project Overview Hawaiian honeycreepers face numerous threats related to sea level rise, increasing storm frequency, erosion and invasive species. These impacts can alter their habitat, making it unsuitable and detrimental to their already small populations. Researchers supported by this Pacific Islands CASC project will create additional populations of a Hawaiian honeycreeper species by
Monitoring of the ʻEkupuʻu (Laysan finch) on Eastern Island, Midway Atoll National Wildlife Refuge

Monitoring of the ʻEkupuʻu (Laysan finch) on Eastern Island, Midway Atoll National Wildlife Refuge

Project Overview Hawaiian honeycreepers face numerous threats related to sea level rise, increasing storm frequency, erosion and invasive species. These impacts can alter their habitat, making it unsuitable and detrimental to their already small populations. Researchers supported by this Pacific Islands CASC project will create additional populations of a Hawaiian honeycreeper species by
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Optimizing Invasive Plant Management in Grasslands with Remote Sensing and Climate Sciences

Tallgrass prairies in the U.S. Southern Great Plains are threatened by the aggressive invasive plant Lespedeza cuneata, and climate change is expected to affect its spread in complex ways. Researchers supported by this South Central CASC project will use remote sensing, climate science, and ecological modelling to detect the plant, identify climate factors driving its spread, and...
Optimizing Invasive Plant Management in Grasslands with Remote Sensing and Climate Sciences

Optimizing Invasive Plant Management in Grasslands with Remote Sensing and Climate Sciences

Tallgrass prairies in the U.S. Southern Great Plains are threatened by the aggressive invasive plant Lespedeza cuneata, and climate change is expected to affect its spread in complex ways. Researchers supported by this South Central CASC project will use remote sensing, climate science, and ecological modelling to detect the plant, identify climate factors driving its spread, and identify future
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Phase Two: Accelerating the Scale and Impact of the Southeast Regional Invasive Species and Climate Change Management Network (SE RISCC)

An invasive species is a species that is not native to a location and that rapidly grows and spreads in its new range, often damaging native plants and wildlife. At present, the southeastern USA harbors thousands of invasive plants and animals, which were introduced intentionally through the plant and pet trade or unintentionally through other forms of commercial trade. Many of these...
Phase Two: Accelerating the Scale and Impact of the Southeast Regional Invasive Species and Climate Change Management Network (SE RISCC)

Phase Two: Accelerating the Scale and Impact of the Southeast Regional Invasive Species and Climate Change Management Network (SE RISCC)

An invasive species is a species that is not native to a location and that rapidly grows and spreads in its new range, often damaging native plants and wildlife. At present, the southeastern USA harbors thousands of invasive plants and animals, which were introduced intentionally through the plant and pet trade or unintentionally through other forms of commercial trade. Many of these invasive
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Predicting Climate-Driven Invasive Fish Spread to Support Indigenous and State Freshwater Management in Florida

Project Overview Climate change and invasive fish species threaten the resilience and biodiversity of freshwater ecosystems in the Southeastern U.S., including the Everglades, which are vital to the Miccosukee Tribe of Indians of Florida. Researchers supported by this Southeast CASC project will model invasive fish distributions under changing climate conditions and refine the model...
Predicting Climate-Driven Invasive Fish Spread to Support Indigenous and State Freshwater Management in Florida

Predicting Climate-Driven Invasive Fish Spread to Support Indigenous and State Freshwater Management in Florida

Project Overview Climate change and invasive fish species threaten the resilience and biodiversity of freshwater ecosystems in the Southeastern U.S., including the Everglades, which are vital to the Miccosukee Tribe of Indians of Florida. Researchers supported by this Southeast CASC project will model invasive fish distributions under changing climate conditions and refine the model predictions
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