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FISHTAIL: A decision support mapper for conserving stream fish habitats of the Northeast Climate Science Center (NECSC) region, extended to the Mississippi Basin for use in conservation planning applications such as the Gulf Hypoxia Initiative. Assessing current and future condition of fluvial habitats Human landscape disturbances occurring throughout the Northeast U.S. that include urbanization, agriculture, and dams have multiple effects on the region’s streams which support economically and socially valuable stream fishes. Changes in climate are expected to cause additional changes in stream habitats, including changing water temperatures, which will potentially alter future stream fish assemblages. To manage...
Land managers in the Great Basin are working to maintain or restore sagebrush ecosystems as climate change exacerbates existing threats. Web applications delivering climate change and climate impacts information have the potential to assist their efforts. Although many web applications containing climate information currently exist, few have been co-produced with land managers or have incorporated information specifically focused on land managers’ needs. Through surveys and interviews, we gathered detailed feedback from federal, state, and tribal sagebrush land managers in the Great Basin on climate information web applications targeting land management. We found that a) managers are searching for weather and climate...
The Great Basin Landscape Conservation Cooperative’s (Great Basin LCC) Conservation Planning Atlas (CPA) is a new geospatial portal that allows users to create and share unique mapping products. It incorporates over 1000 spatial data layers related to conservation of the Great Basin’s many natural and cultural resources. The CPA provides managers, researchers and planners from state, federal, local, NGO and private partners a valuable suite of tools for collaborative spatial planning. All of this information is housed in a single website where readers can access regional spatial layers, decision support tools, and Great Basin LCC project information and products. The CPA is one key part in the Great Basin LCC’s...
Conservation Biology Institute (CBI) has been developing web applications to centralize and serve credible and usable information that allows natural resource managers, as well as the general public, to better understand the challenges posed by on-going environmental change. In particular CBI has designed a series of climate consoles that provide natural resource managers the most recent 5th Climate Model Intercomparison Program (CMIP5) climate projections, landscape intactness, and soil sensitivity for a series of reporting units over the western United States. The publically available web sites were refined based on feedback from a variety of users. In this paper, we describe each of the tools developed as open-source...
The Great Basin LCC Conservation Planning Atlas (CPA) brings cloud-based functionality and collaborative features to a geospatial platform for conservation initiatives across the Great Basin. The CPA resides within the Data Basin online platform, allowing users and groups to create unique collaborative mapping products for their projects. Drawing on over 16,000 datasets currently in Data Basin–including high-priority datasets from LANDFIRE, BLM, USGS, and others–users are able to share maps within public or private groups and then to dynamically interact with those products as a group. In addition to the collaborative planning features, the CPA also provides the Great Basin LCC with another platform through which...
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Estimates of nutrient loading to the Gulf of Mexico indicate that nine states within the Mississippi River Basin are responsible for approximately 75% of all nitrogen and phosphorus delivered to the Gulf. The Mississippi Basin supports a rich assemblage of fish species; at least 25% of all species in the conterminous United States are found in the Basin. These assemblages reflect their habitats, human landscape disturbances, and fragmentation of the river network by dams. Climate also has close associations with aquatic habitat conditions and ultimately fish community composition. Climate change is anticipated to lead to additional changes in stream habitats, including changing thermal properties and flow regimes....


    map background search result map search result map Climate models  for streams in the Mississippi River Basin FishTail: A decision support mapper for conserving stream fish habitats extended to the Mississippi Basin Climate models  for streams in the Mississippi River Basin FishTail: A decision support mapper for conserving stream fish habitats extended to the Mississippi Basin