Project Grant 2549585
- The National Science Foundation Division of Environmental Biology awarded the Research Foundation of The City University of New York (RFCUNY - Advanced Science Research Center) $262,076 on September 1, 2026, for collaborative research on plant carbon allocation, nutrient uptake, and forest productivity in northern hardwood forests under oligotrophication stress. The research examines interactions and feedbacks affecting plant nitrogen and phosphorus availability and carbon partitioning across...
- The National Science Foundation Division of Environmental Biology awarded Trustees of Boston University $407,613 on September 1, 2026, under the Biological Sciences program (CFDA 47.074) to investigate carbon allocation shifts in northern hardwood forests and their effects on plant nutrient uptake and productivity during oligotrophication. The project examines interactions and feedbacks affecting plant nitrogen and phosphorus availability and carbon partitioning across plant components in...
- The National Science Foundation Division of Environmental Biology awarded Cornell University $200,000 in project grant funding on September 1, 2026, under the Biological Sciences program (CFDA 47.074) to investigate how shifts in plant carbon allocation affect nutrient uptake and primary productivity in northern hardwood forests facing oligotrophication. The research examines interactions between plant nitrogen and phosphorus availability and carbon partitioning across plant tissues to determine...
- This Project Grant award from the National Science Foundation's (NSF) Biological Sciences program (CFDA 47.074) provides $491,409 to President & Trustees of Williams College to conduct research on how nitrogen fertilization impacts soil carbon formation and cycling in northern deciduous forests. The key products and services to be delivered include: Leveraging a field experiment to investigate the biogeochemical mechanisms underlying soil carbon responses to nitrogen enrichment across...
- The National Science Foundation Division of Environmental Biology awarded the Smithsonian Institution $600,000 on June 1, 2026, under the Biological Sciences program to conduct long-term research disentangling mechanisms driving biomass decline in a temperate deciduous forest. Over the ten-year period of performance through May 31, 2031, researchers will investigate why biomass in a temperate deciduous forest at the Smithsonian Conservation Biology Institute in Virginia is declining despite...
- This National Science Foundation award under the Biological Sciences program (CFDA 47.074) provides $127,687 to Warren Wilson College to conduct collaborative research on the role of plant-associated microbes in forest ecosystems from November 2022 to May 2025. The research will explore how tree diversity influences leaf and root microbiome communities, leaf chemistry, insect populations, and ultimately tree productivity. Researchers will leverage a 32-acre tree biodiversity experiment in...
- The National Science Foundation Division of Environmental Biology awarded the University of Connecticut $146,417 on September 1, 2026, under the Biological Sciences program (CFDA 47.074) to investigate how tree roots and their microbial partners drive resource partitioning and ecosystem function in mixed-species forests compared to monocultures. The research tests whether higher tree species richness increases belowground biodiversity and promotes complementary resource use, leveraging North...
- This Project Grant award from the National Science Foundation (NSF) Biological Sciences program (CFDA 47.074) provides $858,572 to Clemson University to conduct collaborative research on integrating leaf metabolomics and tree demographic models to understand climate change impacts on forests in the Rocky Mountains and Smoky Mountains. The key objectives of this 4-year project are to: 1) couple measurements of leaf physiology and metabolome composition from controlled drought experiments and...
- The National Science Foundation Division of Environmental Biology awarded the Smithsonian Institution $809,522 on September 1, 2026, to investigate how belowground resource partitioning among tree roots drives forest productivity in mixed-species forests compared to monocultures. The award, provided under the Biological Sciences program (CFDA 47.074), supports a three-year project through August 31, 2029, performed at Edgewater, Maryland. The research deploys state-of-the-art belowground imaging...
- The University of Connecticut received a $559,542 Project Grant awarded August 15, 2025, by the National Science Foundation's Division of Environmental Biology under the Biological Sciences program (CFDA 47.074). This collaborative research initiative will investigate how abiotic factors—including carbon dioxide levels, temperature, water availability, nitrogen deposition, and wildfire—interact to affect seed quantity and quality across North American boreal forest species. The project will...
COLLABORATIVE RESEARCH: DO SHIFTS IN PLANT CARBON ALLOCATION FACILITATE PLANT NUTRIENT UPTAKE & PRIMARY PRODUCTIVITY IN THE FACE OF OLIGOTROPHICATION IN NORTHERN HARDWOOD FORESTS? -CARBON (C), NITROGEN (N) AND PHOSPHORUS (P) ARE THREE OF THE MOST IMPORTANT ELEMENTS NECESSARY FOR PLANT GROWTH. TEMPERATE FORESTS AROUND THE WORLD, PARTICULARLY IN NORTH AMERICA AND EUROPE, HAVE EXPERIENCED DECLINES IN N AVAILABILITY RELATIVE TO PLANT DEMAND SINCE THE END OF THE TWENTIETH CENTURY. IN FORESTS OF THE NORTHEASTERN U.S., DOCUMENTED MECHANISMS BEHIND THESE DECLINES INCLUDE CHANGES IN SNOWMELT TIMING, SOIL MOISTURE, RESORPTION BACK INTO THE PLANT FROM LEAVES, AND ALTERED CHEMISTRY OF LITTERFALL (I.E., LEAVES THAT FALL FROM TREES). P AVAILABILITY RELATIVE TO PLANT DEMAND MAY BE DECREASING EVEN MORE THAN N, ESPECIALLY IF N LIMITATION IS DRIVEN BY INCREASES IN PLANT NUTRIENT CONSUMPTION. THIS PROJECT WILL EXAMINE THE INTERACTIONS AND FEEDBACKS AFFECTING PLANT N AND P AVAILABILITY, AND C PARTITIONING IN DIFFERENT PLANT COMPONENTS, TO DETERMINE THEIR IMPACTS ON LONG-TERM FOREST HEALTH AND PRODUCTIVITY. THE PROJECT WILL ALSO ADVANCE TRAINING OF THE NEXT GENERATION OF SCIENTISTS IN INTEGRATIVE BIOLOGICAL SCIENCE, INCLUDING THE APPLICATION OF MOLECULAR AND BIOINFORMATIC APPROACHES TO FOREST BIOGEOCHEMISTRY, AS WELL AS COMPUTATIONAL MODELING AND MECHANISTIC UNDERSTANDING OF FOREST PROCESSES UNDERPINNING THE U.S. BIOECONOMY. IT WILL ALSO RESULT IN THE CREATION OF DIGITAL AND PRINTED FACT SHEETS AND BULLETINS FOR PARTICIPATING ORGANIZATIONS AND BROAD PUBLIC DISTRIBUTION TO A RANGE OF AUDIENCES INCLUDING LOCAL COMMUNITY MEMBERS AND K-12 STUDENTS AND TEACHERS. THE RESEARCH WILL TEST THE OVERARCHING HYPOTHESIS THAT LONG-TERM REDUCTIONS IN N AND P AVAILABILITY IN SOILS RELATIVE TO PLANT DEMAND LEAD TO INCREASED TRANSFER OF C FROM ABOVEGROUND TO BELOWGROUND PLANT TISSUE. THIS, IN TURN, ENHANCES NUTRIENT ACQUISITION FROM SOILS AND PARTIALLY OFFSETS THIS DECLINE IN N AND P. IN THE SHORT-TERM, ACQUISITION OF NUTRIENTS FROM SOIL POOLS IS PROJECTED TO ALLEVIATE LIMITATION OF P TO A GREATER DEGREE THAN N, SINCE MICROBIAL AND ENZYMATIC PROCESSES MOBILIZE P MORE EFFECTIVELY THAN N FROM SOIL POOLS. IT IS EXPECTED THAT IN THE LONG-TERM, INCREASES IN PLANT GROWTH WILL EXCEED THE CAPACITY OF SOIL POOLS TO SUPPLY N AND P, LEADING TO SUSTAINED NUTRIENT LIMITATION AND REDUCED FOREST PRODUCTIVITY. THESE HYPOTHESES WILL BE TESTED USING A COMBINATION OF LONG-TERM DATASETS, TARGETED FIELD MEASUREMENTS, AND PROCESS-BASED MODELING FOR NORTHERN TEMPERATE FORESTS AT HUBBARD BROOK EXPERIMENTAL FOREST IN NEW HAMPSHIRE. THE WORK INCLUDES USE OF (1) EXISTING DATA FROM FOUR LONG-TERM MONITORING SITES TO QUANTIFY CHANGES IN PLANT ABOVE- AND BELOWGROUND C ALLOCATION OVER TIME AND IN RELATION TO SHIFTS IN SOIL N AND P AND THEIR UPTAKE BY PLANTS; (2) TARGETED MEASUREMENTS AT FOURTEEN PREVIOUSLY ESTABLISHED FIELD SITES ALONG AN ELEVATION GRADIENT, INCLUDING STABLE ISOTOPIC TRACER AND ISOTOPE PROBING OF MICROBIAL COMMUNITIES; AND (3) SIMULATION MODELING USING ARTIFICIAL INTELLIGENCE (AI) TO REPRESENT THE BELOWGROUND C ALLOCATION AND NUTRIENT UPTAKE PROCESSES DRIVING AND UNDERLYING N AND P ACQUISITION AND OLIGOTROPHICATION. THE PROJECT WILL ALSO INCLUDE RESEARCH TRAINING AT THE POSTDOCTORAL, GRADUATE STUDENT AND UNDERGRADUATE LEVELS, AS WELL AS PUBLIC OUTREACH. THESE ACTIVITIES WILL INVOLVE MULTIPLE ENGAGEMENT MEETINGS AMONG PROJECT LEADERS, STUDENTS, AND MEMBERS OF THE NEW HAMPSHIRE FOREST ECONOMY ALLIANCE, A COALITION OF LEADERS COMMITTED TO REVITALIZING THE STATE?S FOREST-BASED ECONOMY. 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.- SUBAWARDS ARE NOT PLANNED FOR THIS AWARD.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $79.7k | 7/16/26 |