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Project Overview Climate change threatens plants and animals across the US, making it important to have tools that can efficiently assess species’ vulnerabilities. In this project, CASC scientists and NatureServe are collaborating to update a popular Climate Change Vulnerability Index to include the latest scientific data, improved metrics, and new user-friendly technology. The tool will help state biologists and scientists prioritize conservation efforts, and in time for preparing updates to State Wildlife Action Plans that are due by 2025. Project Summary Climate change is impacting our nation’s plants and animals. To take preventative actions, public land managers need to know which species are most threatened,...
Threats to the future function of forested ecosystems and stability of ecosystem service provisioning due to global change have motivated climate-adaptive forest management strategies that include various forms of tree planting termed “adaptation plantings”. Despite the emergence of these strategies, less is known as to how foresters and other natural resource managers perceive or are engaged with adaptation plantings like forest assisted migration (FAM). This knowledge gap is most pronounced in regions like New England and the North Central US (hereafter, the Northeastern US) where tree planting is less common but expected to be an important forest management tool for adaptation. To address this, we surveyed 33...
Categories: Publication; Types: Citation
The widely referenced “tens rule” in invasion ecology suggests that approximately 10% of established, non-native species will become invasive. However, the accuracy of this estimate has been questioned, as the original analysis focused on small groups of plant species in Great Britain and Australia. Using a novel database of 9501 established plants and 2924 invasive plants, we provide a comprehensive evaluation of the tens rule and the first empirical analysis of how invasion rates vary across spatial scales, islands/mainlands, and climate zones. We found that invasion rates (the percentage of established species with negative impacts) are highly variable across the globe. Well-sampled environments (those with at...
Categories: Publication; Types: Citation
Threats to the future function of forested ecosystems and stability of ecosystem service provisioning due to global change have motivated climate-adaptive forest management strategies that include various forms of tree planting termed “adaptation plantings”. Despite the emergence of these strategies, less is known as to how foresters and other natural resource managers perceive or are engaged with adaptation plantings like forest assisted migration (FAM). This knowledge gap is most pronounced in regions like New England and the North Central US (hereafter, the Northeastern US) where tree planting is less common but expected to be an important forest management tool for adaptation. To address this, we surveyed 33...
Categories: Publication; Types: Citation
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Fish that migrate between fresh and salt waters, called diadromous fishes, are integral to coastal Tribal cultures as subsistence foods. Throughout their Northeast range, diadromous fish populations have shown strong declines over recent decades due to the combined impacts of habitat loss, pollution, overfishing, and climate change. These changes have led to decreasing access to traditional subsistence foods and connection to Tribal culture. It is therefore imperative to conduct habitat, population and other studies that assess cumulative impacts and identify actions to restore, protect, and adapt Tribal Trust Resources (i.e. river herring (alewife and blueback) and American eels). This project will collaborate...


    map background search result map search result map Increasing Tribal Climate Adaptive Capacity for Coastal Resources in the Northeast Developing a Next-Generation Climate Change Vulnerability Index in Support of Climate-Informed Natural-Resource Management Increasing Tribal Climate Adaptive Capacity for Coastal Resources in the Northeast Developing a Next-Generation Climate Change Vulnerability Index in Support of Climate-Informed Natural-Resource Management