Project Grant 2132238
- This Project Grant award from the National Science Foundation's Biological Sciences program provides $509,573 to Trustees of Tufts College, doing business as Tufts University, for a 3-year research project titled "Collaborative Research: Mechanisms of Community Coalescence in Synthetic Microbiomes." The project aims to investigate how microbiomes, such as those found in fermented foods like sourdough and kombucha, reassemble and function when they mix, a phenomenon known as community...
- This National Science Foundation (NSF) Project Grant award, funded under the Integrative Activities program (CFDA 47.083), provides $277,817 to Oklahoma State University (OSU) to conduct research on the potential role of gut microbiomes in facilitating organism adaptation to environmental changes, such as climate change. The key objectives of the project are to: (1) determine the effect of gut microbiota on adult host phenotypes across environmental gradients, (2) investigate the relationships...
- Federal Project Grant Award Summary The University of Hawaii at Manoa received a $499,938 Project Grant from the National Science Foundation (NSF) Technology, Innovation, and Partnerships program (CFDA 47.084), effective September 1, 2025, through August 31, 2027. This award funds "Microbes as Activators of Abundance for Food Security and Community Resilience," a research initiative addressing Hawaii's food security vulnerabilities through the revitalization of traditional...
- This three-year, $673,000 project grant from the National Science Foundation's Biological Sciences program (CFDA 47.074) will fund research into the role of ecological interactions in diversification among coexisting microbial species. The University of California, Irvine will study how commensal interactions, where one species benefits while the other is unaffected, influence the formation of new bacterial species in microbial communities. Researchers will culture bacteria in a commensal...
- This two-year, $276,000 National Science Foundation project grant funds research into understanding the impact of microbiomes on plant performance in a warming climate. Led by researchers at Durham, North Carolina, the grant supports a postdoctoral fellow investigating how microbial communities inside and on plant surfaces change at elevated temperatures and the effects on plant health. Using molecular, multi-omic, and mathematical modeling approaches, the fellow will examine simultaneous...
- This two-year, $180,000 Project Grant from the National Science Foundation's Geosciences program (CFDA 47.050) will fund research into the role of subsurface microbial communities in biogeochemical cycling and carbon storage across spatial and temporal scales in the United States and Puerto Rico. Dr. Dawson Fairbanks of the University of California-Riverside will explore how soil microbial diversity and functionality respond to changing environmental conditions from the micro to continental...
- The National Science Foundation awarded a $240,000 Project Grant under the Biological Sciences program (CFDA 47.074) to support a postdoctoral research fellowship exploring the rules of life governing interactions between genomes, environments, and phenotypes. The fellowship will fund integrative research from November 1, 2023 to October 31, 2026 investigating how genetics, environments, and microbiomes contribute to emergent host phenotypes in green frog tadpoles. Specifically, the fellow...
- NSF POSTDOCTORAL FELLOWSHIP IN BIOLOGY FY 2021: USING METACOMMUNITY THEORY TO ASSESS THE IMPACT OF MULTI-SPECIES INTERACTIONS ON GUT MICROBIAL ASSEMBLY This $138,000 Project Grant from the National Science Foundation Division of Environmental Biology will fund research from January 1, 2022 to December 31, 2023. The grant was awarded under the Biological Sciences program (CFDA 47.074), which aims to promote progress in the biological sciences and strengthen the nation's scientific enterprise...
- This $138,000 National Science Foundation award under the Biological Sciences program (CFDA 47.074) will fund a Postdoctoral Fellowship in Biology from September 1, 2022 through August 31, 2024. The fellowship will support integrative research investigating the rules governing interactions between genomes, environments and phenotypes in plant microbiomes under global change. The fellow will test new theory on plant-microbe associations and apply a tradeoff framework analyzing microbial yield,...
- This $502,071 National Science Foundation project grant supports research at the University of California, Merced to define metabolic complementation within the sea anemone microbiome. The research aims to advance understanding of how microbial communities cooperate to enhance the fitness, health and survival of eukaryotic hosts. Specifically, the three-year award will fund work to quantify the microbiome's impact on host fitness using gnotobiotic sea anemones, reintroduce isolated microbial...
RII TRACK-4: LEVERAGING FERMENTED FOODS TO UNDERSTAND MICROBIAL INTERACTIONS UNDER CHANGING ENVIRONMENTS AND BROADEN SCIENTIFIC TRAINING OPPORTUNITIES -MICROBES SUCH AS BACTERIA AND FUNGI ARE CRUCIAL TO BOTH HUMAN AND ENVIRONMENTAL HEALTH. FERMENTED FOODS EXEMPLIFY THE IMPORTANCE OF MICROBIAL COMMUNITIES BECAUSE MICROBES DRIVE THE FERMENTATION THAT RESULTS IN THE FLAVORS, TEXTURES, EXTENDED SHELF-LIFE AND EVEN SOME HEALTH BENEFITS OF THESE FOODS. MANY OF THESE FOODS HAVE MULTI-FACETED SIGNIFICANCE, INCLUDING NUTRITIONAL AND CULTURAL IMPORTANCE AS WELL AS ROLES IN FOOD SECURITY DUE TO EXTENDED SHELF LIFE. WORKING WITH LOCALLY IMPORTANT FERMENTED FOODS, SUCH AS TARO (POI), THIS PROJECT WILL DETERMINE HOW THE SUCCESS AND ABUNDANCE OF MICROBIAL SPECIES IS DETERMINED NOT ONLY BY THE ABIOTIC ENVIRONMENT (E.G., TEMPERATURE, MOISTURE, ACIDITY, NUTRIENTS) BUT ALSO BY BIOTIC INTERACTIONS (E.G., HELPFUL OR HARMFUL INFLUENCES OF OTHER ORGANISMS). THIS PROJECT WILL INCREASE RESEARCH CAPACITY, ADVANCE SCIENTIFIC KNOWLEDGE WITH BASIC AND APPLIED IMPORTANCE, AND INITIATE A RESEARCH PROGRAM THAT WILL PROVIDE CULTURALLY RELEVANT SCIENTIFIC TRAINING OPPORTUNITIES. THE FELLOWSHIP WILL TAKE PLACE AT THE UNIVERSITY OF CALIFORNIA, IN THE LABORATORY OF A WORLD LEADER IN FERMENTED FOOD MICROBIOLOGY. THROUGH THIS FELLOWSHIP AND COLLABORATION, THE PI AND STUDENT WILL DEVELOP EXPERTISE IN CUTTING EDGE MOLECULAR METHODS TO IDENTIFY THE TRAITS THAT DETERMINE BACTERIAL FITNESS. INTEGRATION OF THESE TOOLS WITH THE PI?S COMPLEMENTARY EXPERTISE IN MICROBIAL COMMUNITY ECOLOGY WILL SUBSTANTIALLY INCREASE THE PI?S RESEARCH CAPACITY AND THE REACH OF HER RESEARCH PROGRAM WHILE STRENGTHENING THE MICROBIOME SCIENCE PROGRAM AT THE UNIVERSITY OF HAWAI?I. THIS PROJECT AIMS TO DETERMINE THE FITNESS CONSEQUENCES OF MICROBIAL INTERACTIONS UNDER CHANGING ENVIRONMENTAL CONDITIONS. THE PROJECT WILL SPECIFICALLY FOCUS ON MICROBIAL INTERACTIONS DURING ECOLOGICAL SUCCESSION IN LOCALLY IMPORTANT FERMENTED FOODS, BUT THE SCOPE OF THE RESEARCH QUESTION IS BROADLY IMPORTANT ACROSS BASIC AND APPLIED MICROBIAL ECOLOGY. THE PROJECT WILL EMPLOY RECENTLY DEVELOPED HIGH THROUGHPUT MOLECULAR METHODS TO IDENTIFY GENES OR PUTATIVE TRAITS NEEDED FOR BACTERIAL SURVIVAL. THESE MECHANISTIC METHODS WILL BE INTEGRATED WITH A COMMUNITY ECOLOGICAL FRAMEWORK TO UNDERSTAND THE FITNESS CONSEQUENCES OF MICROBIAL INTERACTIONS (I.E., HOW MICROBES AFFECT EACH OTHER?S FITNESS), WHAT MOLECULAR MECHANISMS UNDERLY THOSE EFFECTS, AND HOW THE INTERACTIONS CHANGE DUE TO SHIFTING ENVIRONMENTAL CONDITIONS. THE RESEARCH WILL ADVANCE SCIENTIFIC UNDERSTANDING OF WHY CERTAIN MICROBIAL SPECIES ARE SUCCESSFUL OR ABUNDANT IN A GIVEN ENVIRONMENT. THE NEW KNOWLEDGE GENERATED CAN BENEFIT SOCIETY BY INFORMING FUTURE EFFORTS TO PREDICT THE BENEFICIAL VALUE OF MICROBIAL COMMUNITIES AND EVENTUALLY ENGINEER MICROBIAL COMMUNITIES FOR DESIRED FUNCTIONS. THIS PROJECT WILL DEVELOP A BASIC RESEARCH MODEL FOCUSED ON LOCAL, CULTURALLY IMPORTANT FERMENTED FOODS, WHICH HAVE HISTORICALLY BEEN UNDERSTUDIED. BY CREATING CULTURALLY RELEVANT RESEARCH TRAINING OPPORTUNITIES, THIS PROJECT WILL FOSTER BROADER PARTICIPATION IN SCIENCE. 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 | $0 | 11/19/25 | ||
| Not listed | $237.7k | 1/27/22 |