Project Grant 2134446
- Federal Project Grant Award Summary The Science Museum of Minnesota received a $233,888 Project Grant award from the National Science Foundation's Division of Environmental Biology under the Biological Sciences program (CFDA 47.074), effective September 1, 2025 through August 31, 2030. This collaborative Long-Term Research in Environmental Biology (LTREB) project investigates the dynamics of extreme climate disturbance in Arctic lakes, specifically examining rapid ecosystem degradation in West...
- The National Science Foundation (NSF) Division of Environmental Biology awarded a $653,498 Project Grant to Montana State University to conduct collaborative research with the UK Natural Environment Research Council (NERC) on how continued warming and increasing drought will influence stream ecosystems. The key objectives of this 3-year project are to: 1) investigate whether physiological adaptations to warming can compensate for reduced invertebrate carbon use efficiencies at high temperatures,...
- This Project Grant award from the National Science Foundation (NSF) Biological Sciences program (CFDA 47.074) supports research at the University of Wyoming to study the evolutionary effects of fish predation on zooplankton in high mountain lake ecosystems. The $307,371 award will be used to quantify differences in the elemental composition and nutrient cycling between zooplankton populations in lakes with and without introduced trout. The project aims to improve understanding of the impacts...
- This Project Grant award from the National Science Foundation (NSF) Biological Sciences program (CFDA 47.074) provides $487,639 to the University of California, Berkeley to conduct long-term monitoring and research on plant community dynamics in the Colorado alpine biome. The project aims to assemble a unique long-term dataset on population and community changes in response to rapid environmental changes, such as climate change, to advance ecological theory and forecasting. Key activities...
- Summary The University of Wisconsin–Madison received a $450,000 Project Grant from the National Science Foundation's Office of International Science and Engineering (CFDA 47.079) awarded October 1, 2025, with completion targeted for September 30, 2028. Titled "IRES: Aquatic Bright Spots: Ecological Resilience in Northern Lakes and Rivers," this International Research Experience for Students (IRES) award supports a six-week annual research expedition to Lake Hovsgol and the Eg River...
- This five-year, $3 million Project Grant from the National Science Foundation's Biological Sciences program (CFDA 47.074) will fund research at the University of Colorado Boulder, Cornell University, Florida Atlantic University, and the University of New Mexico to develop methods for understanding how the functioning and dynamics of complex ecological interaction networks emerge and respond to environmental change. The researchers will measure multivalent interactions among fish and other...
- Federal Project Grant Award Summary The National Science Foundation's Division of Environmental Biology awarded the University of Maine System $399,959 under the Biological Sciences program (CFDA 47.074) on September 1, 2025, for a Long-Term Research in Environmental Biology (LTREB) collaborative research project. The award supports a decade-long study examining ecosystem dynamics in Arctic lakes following extreme climate disturbance events in West Greenland. The project leverages over a...
- This cooperative agreement award from the U.S. Geological Survey will fund a project providing $100,000 to the University of Vermont and State Agricultural College. The project aims to synthesize patterns and drivers of changes in lake zooplankton communities worldwide under the U.S. Geological Survey Research and Data Collection program (CFDA 15.808). Over a two-year period, the university team will address questions about freshwater zooplankton dynamics on a global scale using their...
- This National Science Foundation (NSF) Geosciences Program (CFDA 47.050) Project Grant award of $339,172 will fund research on how the microbiome of the copepod Acartia tonsa, a critical component of marine food webs, responds to thermal stress caused by climate change. The research, conducted by the University of Vermont & State Agricultural College, has three main objectives: 1) determine the microbial composition of A. tonsa's southernmost North American population and how it varies under...
- This three-year, $499,999 Project Grant from the National Science Foundation's Biological Sciences program (CFDA 47.074) supports research at Utah State University to reduce uncertainties about ecosystem acclimation to climate change. The university researchers will develop a theoretical framework to study lags in ecosystem adaptation across temporal and organizational scales. They will synthesize knowledge from paleoecology, long-term studies, experiments and models on processes like trait...
LTREB: INTERACTIONS BETWEEN POPULATION AND ECOSYSTEM DYNAMICS, AND THE HIGH-AMPLITUDE FLUCTUATIONS OF MIDGE ABUNDANCES IN LAKE MYVATN, ICELAND -ECOSYSTEMS ARE COMPLICATED BECAUSE THEY DEPEND ON LARGE NUMBERS OF PLANTS, ANIMALS, AND MICROBES THAT DEPEND ON EACH OTHER AS WELL AS THE ENVIRONMENT IN WHICH THEY LIVE. THIS RESEARCH FOCUSES ON AN ECOSYSTEM, LAKE MYVATN, THAT IS SIMPLE IN TERMS OF THE SPECIES THAT EXIST THERE, AND IS NATURALLY UNSTABLE. OF THE MODERATE NUMBER OF HERBIVORES IN THE LAKE, ONE HAS AN OUTSIZED EFFECT, A SPECIES OF MIDGE -- A NON-BITING, MOSQUITO-SIZED INSECT -- THAT IN ITS JUVENILE STAGE FEEDS AT THE BOTTOM OF THE LAKE. IN SOME YEARS, THE TOTAL WEIGHT OF ALL ADULT MIDGES SWARMING OUT OF THE LAKE IS EQUIVALENT TO THE WEIGHT OF 100 HUMPBACK WHALES, WHILE IN OTHER YEARS THE TOTAL WEIGHT IS EQUIVALENT TO A FEW GOLDEN RETRIEVERS. THESE FLUCTUATIONS IN MIDGE ABUNDANCES ARE UNPREDICTABLE, WITH NATURAL CRASHES OCCURRING EVERY 4 TO 10 YEARS. THE CRASHES ARE NOT CAUSED BY WEATHER OR ANYTHING OUTSIDE THE LAKE, AND APPEAR TO BE PART OF A NATURAL INSTABILITY OF THE LAKE ITSELF. MANY COMPONENTS OF THE LAKE ECOSYSTEM CHANGES WITH MIDGE FLUCTUATIONS, FROM THE BREEDING SUCCESS OF BIRDS THAT DEPEND ON THE MIDGES AS FOOD TO THE ACTIVITY OF MICROBES THAT PERFORM ESSENTIAL CHEMISTRY FOR THE LAKE ECOSYSTEM. THESE PROCESSES OCCUR IN ALL ECOSYSTEMS, BUT ECOSYSTEMS THAT SHOW THIS TYPE OF INSTABILITY ARE EXTREMELY RARE. BY UNDERSTANDING WHAT MAKES THE MYVATN ECOSYSTEM NATURALLY UNSTABLE, WE CAN LEARN WHAT MAKES OTHER ECOSYSTEMS AS STABLE AS THEY ARE, THEREBY GIVING US INSIGHT INTO PREDICTING AND MANAGING OTHER LESS-EXTREME ECOSYSTEMS. THE PROJECT WILL TRAIN GRADUATE STUDENTS AND UNDERGRADUATE INTERNS. THE RESEARCH INVOLVES BOTH LONG-TERM COLLECTION OF BIOLOGICAL AND BIOGEOCHEMICAL DATA FROM THE MYVATN ECOSYSTEM AND TARGETED EXPERIMENTS TO TEST SPECIFIC HYPOTHESES. THE DATA COLLECTION BUILDS AND EXPANDS ON AN EXISTING LONG TERM DATABASE, WITH MONITORING OF SOME VARIABLES STARTING IN THE 1970S (ADULT MIDGES) AND 1980S (ZOOPLANKTON, STICKLEBACK FISH). THE PROJECT HAS ADDED WEEKLY MONITORING OF MANY ADDITIONAL VARIABLES, INCLUDING MIDGE LARVAL DENSITY, BENTHIC PRIMARY PRODUCTION, AND PELAGIC AND BENTHIC NUTRIENTS. THE TARGETED EXPERIMENTS COVER A WIDE RANGE OF RESEARCH QUESTIONS INCLUDING (I) THE ROLE THAT MIDGES PLAY AS ECOSYSTEM ENGINEERS, CHANGING BENTHIC CONDITIONS TO INCREASE PRIMARY PRODUCTION AND POSSIBLY CHANGE NUTRIENT CYCLING, (II) THE FLUCTUATIONS IN BENTHIC ECOSYSTEM PROCESSES CAUSED BY SPATIOTEMPORAL FLUCTUATIONS IN MIDGE ABUNDANCES AND PELAGIC CYANOBACTERIA BLOOMS, AND (III) CHANGES IN BENTHIC AND ALGAL SPECIES COMPOSITION AS BOTH CONSEQUENCES AND CAUSES OF MIDGE POPULATION FLUCTUATIONS. THIS AWARD REFLECTS NSF'S STATUTORY MISSION AND HAS BEEN DEEMED WORTHY OF SUPPORT THROUGH EVALUATION USING THE FOUNDATION'S INTELLECTUAL MERIT AND BROADER IMPACTS REVIEW CRITERIA.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $135.9k | 8/21/25 | ||
| Not listed | $404.7k | 1/30/23 | ||
| Not listed | $133.8k | 1/28/22 |