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For the past six years, the Bureau of Reclamation (BOR) has funded the USGS to study fish responses to restoration efforts and to construct a model relating stream habitat with fish population dynamics in the Methow River Basin, a tributary of the Columbia River. In the proposed study, we will use fish growth, distribution and movement (USGS data), foodweb data (Idaho State University), river flow (BOR data that we will expand) and water temperature data (from numerous agencies) to develop spatially-explicit bioenergetics models to assess effects of climate change on the viability of resident salmonid populations based on models being developed by USGS. The bioenergetics models will integrate such things as climate-change...
Categories: Data, Project; Types: Map Service, OGC WFS Layer, OGC WMS Layer, OGC WMS Service; Tags: Alberta, British Columbia, Bull Trout, Climate Change, Climate Change, All tags...
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In May 2014, the GNLCC Steering Committee approved two pilot projects explore approaches to landscape-scale coordination to enhance science-based management across the GNLCC. The two ‘Shared Landscape Outcomes’ pilots were designed to assess and focus on specific pairs of a GNLCC Goal and a priority landscape stressor (as defined in the Strategic Conservation Framework) and focus the approach at the entire GNLCC scale. The two pilot projects focused on (1) the Connectivity goal and Land Use Change stressor (described here) and (2) the Aquatic Integrity goal and Invasives stressor and (see: https://www.fws.gov/science/catalog )Connectivity Pilot:Wildlife species are becoming increasingly isolated in patches of habitat,...
Categories: Data, Project; Types: Map Service, OGC WFS Layer, OGC WMS Layer, OGC WMS Service; Tags: Alberta, Aquatic Connectivity, British Columbia, Bull Trout, Cascadia, All tags...
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The Cascadia Partner Forum will complete conservation design for four Great Northern Landscape Conservation Cooperative conservation targets with significance to the transboundary Cascadia landscape to inform sound, data-driven management planning and action. This project aims to complete conservation design at the Cascadia-wide scale for grizzly bear, salmon, aquatic, and terrestrial connectivity to contribute to the Great Northern LCC Science Plan, while providing input and integration to the coarser-scale GNLCC-wide Science Plans established objectives, threats, metrics, and conservation actions for each target. Additionally, the Forum will conduct analyses on a common Great Northern LCC landscape stressor roads...
Categories: Data, Project; Types: Map Service, OGC WFS Layer, OGC WMS Layer, OGC WMS Service; Tags: Aquatic Connectivity, British Columbia, Bull Trout, Canada Lynx, Cascadia, All tags...
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Streams are classified as perennial (flowing uninterrupted, year-round) or intermittent (flowing part of the year) or ephemeral (flowing only during rainfall events). The classifications of “streamflow permanence” were primarily established in the middle 20th century and are often outdated and inaccurate today if they were not adjusted for changes in land use, wildfires, or climate.Understanding where streams are perennial is important for a variety of reasons. For example, perennial streams receive special regulatory protections under a variety of statutes, and provide important habitat for fish, wildlife, and other species. To predict the likelihood that streams are perennial, we compiled nearly 25,000 observations...
Categories: Project; Types: Map Service, OGC WFS Layer, OGC WMS Layer, OGC WMS Service; Tags: 2016, CASC, Completed, Data Visualization & Tools, Data Visualization & Tools, All tags...
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This project will support the design and development of a large-scale aquatics monitoring program across 1.5 million acres of the Crown of the Continent, as part of a 10-year, landscape-level restoration project established and funded by the U.S. Forest Service in 2010. The Forest Service has directed each of ten Cooperative Forest Landscape Restoration Program projects to develop and implement a large-scale monitoring program to inventory current resource conditions and facilitate the short- and long-term evaluation of the effectiveness of restoration projects to inform future management strategies and actions: the work proposed here would address significant challenges associated with maintaining or improving...
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We propose to work with the Rocky Mountain Partnership Forum to expand upon the successful approach applied in the first two years of this project to help managers incorporate climate change science into their natural resource management decisions for a new resource of interest that will be chosen by the Rocky Mountain Partner Forum members. This project will be implemented through the Rocky Mountain Partner Forum to share information with and among partners about emerging climate science and strategies for integrating climate change into natural resource management decisions in the region. We will also support the Rocky Mountain Partner Forum Leadership Team as it seeks to formalize the Forum and set directions...
Categories: Data, Project; Types: Map Service, OGC WFS Layer, OGC WMS Layer, OGC WMS Service; Tags: Alberta, Aquatic Connectivity, British Columbia, Bull Trout, Climate Change, All tags...
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The bull trout is an ESA-listed species that relies on cold stream environments across the Northwest and is expected to decline with climate change. Resource managers are charged with maintaining bull trout across their range, but monitoring this species is difficult and many populations have rarely or never been sampled. To reduce this uncertainty (and regulatory gridlock), we propose to coordinate a crowd-sourced field assessment of the distribution of bull trout in the U.S. by using inexpensive, reliable environmental DNA (eDNA) sampling. Samples collected by this multi-partner effort can be used to evaluate many other species (e.g., a biodiversity assessment) with no additional field costs and can serve as a...
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The bull trout, listed as threatened under the Endangered Species Act, is well adapted to the cold waters of the Northwest. Recent changes in climate have caused winter flooding and warmer summer water temperatures in the region, reducing the cold-water habitats that bull trout depend on. The southernmost bull trout populations, found in Oregon, Washington, Idaho, Montana, and Nevada, are currently restricted to small reserves where the coldest waters still exist. These shrinking habitats have created a severed environment being further split by dams, poor water quality, and invasive species. The goal of this project was to determine how these factors threaten the species regionally by using predictions of stream...
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Increased network capacity is a priority identified by the GNLCC and the RMPF Leadership Team to build on the organizational structure of LCC Partner Forums. Partner Forum organizations are intentionally inclusive collections of key decision-makers and stake-holders in the region who facilitate the flow of information and ideas, the delineation of shared priorities, and the advancement of projects leading to mutually beneficial outcomes. The ability of a Partner Forum to provide these services is directly related to the efficacy of its network. As the Partner Forum network improves, it successfully applies the outcomes of its work across the Rocky Mountain region and the greater GNLCC area.The importance of building...
Abstract (from http://onlinelibrary.wiley.com/doi/10.1111/gcb.12850/abstract): Understanding how climatic variation influences ecological and evolutionary processes is crucial for informed conservation decision-making. Nevertheless, few studies have measured how climatic variation influences genetic diversity within populations or how genetic diversity is distributed across space relative to future climatic stress. Here, we tested whether patterns of genetic diversity (allelic richness) were related to climatic variation and habitat features in 130 bull trout ( Salvelinus confluentus) populations from 24 watersheds (i.e., ~4–7th order river subbasins) across the Columbia River Basin, USA. We then determined whether...
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Native fish of the Columbia River Basin, and the ecosystems that support them, are an innate and critical part of Nez Perce culture. The persistence of these fisheries may be at risk due to climate change, especially in combination with other stressors (e.g., habitat fragmentation and disconnectivity). Assessing vulnerability of these fisheries to climate change, considering options for action, and taking action will require strategic collaboration and coordination with multiple partners. Here, we propose to start building those partnerships to address this landscape-level conservation concern.The overarching philosophy of Nez Perce fisheries management is to ensure that all species and populations of anadromous...
Parent Project: Range-Wide Climate Vulnerability Assessment for Threatened Bull Trout Publication Abstract: Forecasts of species distributions under future climates are inherently uncertain, but there have been few attempts to describe this uncertainty comprehensively in a probabilistic manner. We developed a Monte Carlo approach that accounts for uncertainty within generalized linear regression models (parameter uncertainty and residual error), uncertainty among competing models (model uncertainty), and uncertainty in future climate conditions (climate uncertainty) to produce site-specific frequency distributions of occurrence probabilities across a species’ range. We illustrated the method by forecasting suitable...
Bull Trout is the most cold-adapted fish in freshwaters of the Pacific Northwest. The species is listed as threatened under the U.S. Endangered Species Act, but climate warming may place the species at further risk. Climate warming may lead to warming of streams in summer and increasing probability of floods in winter, leading to widespread loss of habitat projected for Bull Trout. This project sought to further elaborate how these climate-related threats influence Bull Trout across five western states (OR, WA, ID, MT, NV). These states form the southern margin of the species’ range. We used predictions of temperatures in streams across approximately two-thirds of this extent to map coldwater streams or “patches”...
Abstract (from http://www.nrcresearchpress.com/doi/abs/10.1139/cjfas-2014-0098#.VN_BFGjF_gl): Linked atmospheric and wildfire changes will complicate future management of native coldwater fishes in fire-prone landscapes, and new approaches to management that incorporate uncertainty are needed to address this challenge. We used a Bayesian network (BN) approach to evaluate population vulnerability of bull trout ( Salvelinus confluentus) in the Wenatchee River basin, Washington, USA, under current and future climate and fire scenarios. The BN was based on modeled estimates of wildfire, water temperature, and physical habitat prior to, and following, simulated fires throughout the basin. We found that bull trout population...
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This project will support the design and development of a large-scale aquatics monitoring program across 1.5 million acres of the Crown of the Continent, as part of a 10-year, landscape-level restoration project established and funded by the U.S. Forest Service in 2010. The Forest Service has directed each of ten Cooperative Forest Landscape Restoration Program projects to develop and implement a large-scale monitoring program to inventory current resource conditions and facilitate the short- and long-term evaluation of the effectiveness of restoration projects to inform future management strategies and actions: the work proposed here would address significant challenges associated with maintaining or improving...
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This project will support the design and development of a large-scale aquatics monitoring program across 1.5 million acres of the Crown of the Continent, as part of a 10-year, landscape-level restoration project established and funded by the U.S. Forest Service in 2010. The Forest Service has directed each of ten Cooperative Forest Landscape Restoration Program projects to develop and implement a large-scale monitoring program to inventory current resource conditions and facilitate the short- and long-term evaluation of the effectiveness of restoration projects to inform future management strategies and actions: the work proposed here would address significant challenges associated with maintaining or improving...
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Existing stream temperature data were compiled from numerous federal, state, tribal, and private sources to develop an integrated regional database. Spatial statistical models for river networks were applied to these data to develop an accurate model that predicts stream temperature for all fish-bearing streams in the US portion of the GNLCC. Differences between model outputs for historic and future climate scenarios were used to assess spatial variation in the vulnerability of sensitive fish species across the GNLCC.FY2011Objectives: Develop a regional stream temperature model that incorporates important climate drivers, wildfire/riparian conditions, and geomorphic factors; Use the model to understand and predict...
Categories: Data, Project; Types: Map Service, OGC WFS Layer, OGC WMS Layer, OGC WMS Service; Tags: Academics & scientific researchers, Aquatic Connectivity, British Columbia, Bull Trout, CA-1, All tags...
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We propose a regional assessment of aquatic species vulnerabilities and responses to climate change as the basis for adaptive management for aquatic ecosystems in the Great Northern LCC, using the Transboundary Flathead Ecosystem as a case example. This region encompasses a complex mix of federal, state, tribal, and private lands in the US and federal, provincial and private lands in Canada. The complex suite of ownerships, international relations, and agency objectives establish their own set of challenges; however, all will experience a similar range of climatic (e.g., long-term drought and declining snow pack) and non-climatic (e.g., habitat fragmentation, shifting land- and water use patterns, and invasive species)...
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Funding supports a multiyear initiative entitled Crown of the Continent Landscapes Analysis/Ecological Indicators Project. The work is designed to focus on issues on transboundary data integration and synthesis, habitatconnectivity analysis for grizzly bears (Ursus arctos) and other key wildlife species, and outreach programs aimed at disseminating knowledge, information products, and geospatial tools arising out of this work to the extensive network of Crown Managers Partnership (CMP) and GNLCC collaborators.FY2010Objectives:The monitoring strategy will focus on the development and acquisition of geospatial datasets from remote sensing and other GIS sources designed to track changes in habitats and human footprint...
Categories: Data, Project; Types: Map Service, OGC WFS Layer, OGC WMS Layer, OGC WMS Service; Tags: Alberta, Alberta, British Columbia, British Columbia, Bull Trout, All tags...
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Workshop goals were to gather a diverse group of researchers and management professionals to focus on three objectives: Sharing current information regarding the effects of climate change on aquatic ecosystems Presenting analysis tools that could assist managers in addressing climate change Discussing management implications of climate change, the utility of existing tools, and future information & analysis needs


    map background search result map search result map Rangewide Climate Vulnerability Assessment for Threatened Bull Trout Crown of the Continent Landscapes Analysis/Ecological Indicators Project A New Model of Watershed-scale Aquatic Monitoring from the Crown of the Continent: Quantifying the Benefits of Watershed Restoration in the Face of Climate Change The NorWeST Regional Stream Temperature Model for Mapping Thermal Habitats and Predicting Vulnerability of Aquatic Species to Climate Change Across the Great Northern LCC Forecasting the impacts of Climate Change in the Columbia River Basin: Threats to Fish Habitat Connectivity Predicting Effects of Climate Change on Aquatic Ecosystems in the Crown of the Continent Ecosystem : Combining Vulnerability Assessments, Landscape Connectivity , and Modeling for Conservation and Adaptation Facilitating climate change adaptation planning and implementation through the GNLCC Rocky Mountain Partner Forum Understanding and Adapting To Climate Change in Aquatic Ecosystems at Landscape and River Basin Scales.  A Decision Support Workshop for Integrating Research and Management Conserving an Intact and Connected GNLCC Landscape Strategic conservation planning for management applications in Cascadia Climate adaptation planning for Nez Perce fisheries A rapid range-wide assessment of bull trout distributions: a crowdsourced, eDNA-based approach with application to many aquatic species Identifying Resilient Headwater Streams to Mitigate Impacts of Future Drought in the Northwest Increasing the Capacity of the GNLCC Rocky Mountain Partners Forum A New Model of Watershed-scale Aquatic Monitoring from the Crown of the Continent: Quantifying the Benefits of Watershed Restoration in the Face of Climate Change TestProject The NorWeST Regional Stream Temperature Model for Mapping Thermal Habitats and Predicting Vulnerability of Aquatic Species to Climate Change Across the Great Northern LCC A rapid range-wide assessment of bull trout distributions: a crowdsourced, eDNA-based approach with application to many aquatic species A New Model of Watershed-scale Aquatic Monitoring from the Crown of the Continent: Quantifying the Benefits of Watershed Restoration in the Face of Climate Change A New Model of Watershed-scale Aquatic Monitoring from the Crown of the Continent: Quantifying the Benefits of Watershed Restoration in the Face of Climate Change TestProject Climate adaptation planning for Nez Perce fisheries Predicting Effects of Climate Change on Aquatic Ecosystems in the Crown of the Continent Ecosystem : Combining Vulnerability Assessments, Landscape Connectivity , and Modeling for Conservation and Adaptation Strategic conservation planning for management applications in Cascadia Identifying Resilient Headwater Streams to Mitigate Impacts of Future Drought in the Northwest Rangewide Climate Vulnerability Assessment for Threatened Bull Trout Facilitating climate change adaptation planning and implementation through the GNLCC Rocky Mountain Partner Forum Increasing the Capacity of the GNLCC Rocky Mountain Partners Forum Forecasting the impacts of Climate Change in the Columbia River Basin: Threats to Fish Habitat Connectivity Understanding and Adapting To Climate Change in Aquatic Ecosystems at Landscape and River Basin Scales.  A Decision Support Workshop for Integrating Research and Management Conserving an Intact and Connected GNLCC Landscape