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A decline in habitat quality and quantity in the southern Great Plains is a driving factor in population declines of endemic grassland birds, insects, and native plants. Native grassland species face habitat loss and fragmentation, as well as habitat degradation from pesticide use, invasive species, woody encroachment, disease, and climate change. Few baseline datasets exist to compare long term change over time from both local and landscape (ecoregion) levels. These datasets could then be used in conjunction with conservation decisions by local entities as well as training datasets for future modeling efforts.
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This project proposes development of a spatial decision support system (DSS) designed to address an identified major conservation goal of the Eastern Tallgrass Prairie and Big Rivers Landscape Conservation Cooperative (ETPBR LCC), in collaboration with adjacent LCCs in the Midwestern U.S. Specifically, the DSS will be designed to identify select geographic areas (watersheds) within the Mississippi River Basin (MRB) where the application of conservation practices (e.g., planting perennial grasses, drainage management systems) can simultaneously (1) reduce nutrient export to the Gulf of Mexico hypoxia zone and (2) enhance habitat and conservation for grassland birds and riparian species (also avian migration corridors),...
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Oyster reefs are one of the most important environmental and economic resources within the coastal regions of the United States. Although oyster reefs in deeper water have been mapped, the extent and condition of intertidal reefs has not been sufficiently inventoried in most states. Understanding the geographic extent and condition of intertidal oyster reef and shell bottoms is important for assessing parental stock and to determine potential recruitment bottlenecks for oysters within an estuary. These intertidal areas have traditionally served as a sanctuary from commercial harvest pressure due to closures, safety, and operational barriers preventing the harvesting of oysters in shallow water. The location...
Submersed aquatic vegetation, a critical component of highly productive coastal ecosystems, is greatly affected by sea level rise. The Gulf Coast Prairie Landscape Conservation Cooperative needs consistent information on these natural resources along the Gulf of Mexico Coast to develop computer modeling tools. These tools will contribute to efforts to forecast the effects of climate change on the distribution, abundance, and diversity of submersed aquatic vegetation and the fish and wildlife that depend on them. This project was co-funded by the Gulf Coast Prairie and the Gulf Coastal Plains and Ozarks Landscape Conservation Cooperatives and the South Central Climate Adaptation Science Center. An alternate reference...
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This project, part of a broader effort called the Gulf Coast Vulnerability Assessment, involved identifying gaps in data and integrating datasets and corresponding metadata required for a Gulf of Mexico-wide assessment of conditions and variables affecting barrier island vulnerability. Morphologic and geospatial datasets were later incorporated into the Conservation Planning Atlas, an emerging technology that makes a vast amount of geospatial data more easily accessible and available at no cost to conservation partners.
Categories: Data, Project; Types: Map Service, OGC WFS Layer, OGC WMS Layer, OGC WMS Service; Tags: 2014, AL-01, AL-01, AL-02, AL-02, All tags...
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Improved Gulf Hypoxia Planning Tool: Landscape scale planning tools focus conservation priorities through a series of region-specific lenses. These tools include: CHAT; SECAS; Gulf Hypoxia Initiative - Precision Conservation Blueprint v1.5; and landscape designs developed by the Great Plains LCC and Gulf Coast Prairie LCC. Discussions with industry, agency and organizational leaders across the mid-continent suggest that the time is ripe for opening a dialogue about how to bridge the planning between the west and east to find the appropriate stakeholder-driven set of mid-continent connections for a network of lands and waters. The recipient will assist staff from multiple LCCs and other interested entities in setting...
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We propose to empirically characterize hydrology/fish-production relationships for different ecological groups of fishes living in the Red River and associated reservoir habitats by: 1. Correlating historic hydrologic data with catch curve residuals, and 2. Annual growth rate estimates of fish collected from the Red River and associated reservoirs. The catch curve residual approach for indexing year class strength has been validated and successfully used to quantify the relationship between reservoir hydrology and YOY recruitment for white crappie and largemouth. The essence of the approach is as follows. Catch curves (a correlation between the natural log of fish abundance and age) are used to measure total instantaneous...


map background search result map search result map Barrier Island Vulnerability Data Integration and Assessment GAP analysis and spatial Decision Support System for grassland and riparian birds Mapping shallow reefs using low-cost side scanning sonar and drone photography systems Support for monitoring and evaluation of grassland birds, habitat, and management practices for focal species in Oklahoma Incorporating an approach to aid river and reservoir fisheries in an altered landscape Precision Conservation Blueprint v2.0 Mapping shallow reefs using low-cost side scanning sonar and drone photography systems Incorporating an approach to aid river and reservoir fisheries in an altered landscape Support for monitoring and evaluation of grassland birds, habitat, and management practices for focal species in Oklahoma Barrier Island Vulnerability Data Integration and Assessment GAP analysis and spatial Decision Support System for grassland and riparian birds Precision Conservation Blueprint v2.0