Project Grant 2208081
- The National Science Foundation Division of Ocean Sciences awarded a $3 million Project Grant to the Virginia Institute of Marine Science under the Geosciences program (CFDA 47.050) to study biotic and abiotic drivers of pathogen transmission in marine systems influenced by climate change. Specifically, the award will fund research examining how climate change and other human impacts alter disease transmission dynamics in marine populations. The project focuses on investigating the...
- This collaborative research project grant, awarded on September 1, 2025, by the National Science Foundation's Division of Ocean Sciences under the Geosciences program (CFDA 47.050), provides $380,162 in funding through August 31, 2028, to investigate the drivers of Diadematidae scuticociliatosis (DASPC), a parasitic disease affecting long-spined sea urchins in Caribbean coral reef ecosystems. The University of South Florida serves as the prime awardee and will deliver comprehensive research...
- This $899,961 Project Grant awarded by the National Oceanic and Atmospheric Administration (CFDA 11.427 Fisheries Development and Utilization Research and Development Grants and Cooperative Agreements Program) will support a research project at Stony Brook University to address knowledge gaps related to factors that can impact disease development and mortality in a major local fishery in the Northeast region. The project aims to provide information on the distribution of the parasite, as well as...
- This $115,936 Project Grant awarded by the National Science Foundation (NSF) Geosciences Program (CFDA 47.050) supports fundamental research on the evolutionary history and species delineations of coronuloid barnacles (arthropod crustaceans) that are epizoic with marine megafauna like sea turtles and whales. The key research objectives are to: 1) construct a phylogeny mapping the evolutionary chronology of barnacle attachment mechanisms (gluing, gripping, gouging); 2) compare global...
- This National Science Foundation (NSF) Biological Sciences program (CFDA 47.074) project grant award of $296,162 to Citadel, The Military College of South Carolina, aims to study the evolutionary history and genetic diversity of barnacles that attach to sea turtles and whales. The key objectives are to: 1) construct a phylogeny mapping the evolutionary timeline of barnacle attachment mechanisms (gluing, gripping, and gouging); 2) compare global phylogeographic patterns of barnacle species across...
- The National Science Foundation (NSF) awarded a $616,108 Project Grant under its Biological Sciences program (CFDA 47.074) to the University of South Florida (USF) to conduct collaborative research on the spatio-temporal repeatability of co-evolution between Tasmanian devils and their transmissible cancer. The 4-year project, awarded on August 15, 2023 and scheduled to conclude on July 31, 2027, aims to determine whether the genetic pathways underlying adaptive changes in Tasmanian devils and...
- This Project Grant award of $444,594 from the National Science Foundation's Geosciences Program (CFDA 47.050) will support research into how a major extinction event during the Plio-Pleistocene transition impacted the interactions between flatworm parasites and their clam hosts in the western Atlantic Ocean. The project aims to evaluate changes in parasite prevalence, abundance, body size, and impacts on host growth and longevity, as well as utilize geochemical proxies to understand the...
- This Project Grant award of $133,203 was provided by the National Science Foundation (NSF) through its Mathematical and Physical Sciences (CFDA 47.049) program. The award supports a collaborative research project among the University of Florida, University of Georgia, and University of Massachusetts Amherst to develop advanced mathematical models to improve understanding and management of schistosomiasis transmission dynamics, with a focus on the transition from high to low transmission phases...
- This $391,336 National Science Foundation project grant funds research on linking host life history, movement ecology, and climate to predict disease outbreaks in tropical amphibian communities. The Division of Environmental Biology award supports a collaborative research effort between May 2022 and November 2023. Key products include field surveys of infection patterns in diverse amphibian populations across three tropical regions, an experimental manipulation of rainfall variability to test...
- This Research Initiation in Undergraduate Institutions (RUI) Project Grant, funded by the National Science Foundation (NSF) Division of Environmental Biology under the Biological Sciences program (CFDA 47.074), supports fundamental research investigating microvesicle-mediated viral transmission using rotavirus as a model system. The $498,069 award, initiated September 1, 2025 and concluding August 31, 2028, is administered through the Research Foundation of the City University of New York...
QUANTIFYING AND MODELING THE TRANSMISSION DYNAMICS OF BIVALVE TRANSMISSIBLE NEOPLASIA -CANCER IS NOT NORMALLY THOUGHT OF AS AN INFECTIOUS DISEASE. HOWEVER, SEVERAL TRANSMISSIBLE CANCERS HAVE RECENTLY BEEN FOUND IN THE WILD, IN WHICH THE CANCER CELLS THEMSELVES JUMP FROM ANIMAL TO ANIMAL AS AN INFECTIOUS AGENT, CAUSING SIGNIFICANT MORTALITY ON LAND AND IN THE MARINE ENVIRONMENT. MARINE BIVALVES APPEAR TO BE PARTICULARLY SUSCEPTIBLE. AT LEAST NINE LINEAGES OF LETHAL TRANSMISSIBLE CANCER HAVE BEEN IDENTIFIED IN EIGHT BIVALVE SPECIES WORLDWIDE SINCE THEY WERE FIRST RECOGNIZED AS AN INFECTIOUS CANCER BY MEMBERS OF THIS TEAM LESS THAN A DECADE AGO. IT IS KNOWN THAT WHOLE CANCER CELLS TRANSFER FROM ONE ANIMAL TO ANOTHER, BUT IT IS UNCLEAR HOW THIS INFECTIOUS DISEASE SPREADS AT THE INDIVIDUAL LEVEL, WITHIN A SINGLE POPULATION, OR BETWEEN POPULATIONS IN THE ENVIRONMENT. THE INTERDISCIPLINARY TEAM IS COMBINING SENSITIVE FIELD SURVEYS OF DISEASE PREVALENCE, LABORATORY INOCULATION, AND IN VITRO EXPERIMENTS TOGETHER WITH QUANTITATIVE MODELING TO UNDERSTAND HOW THIS UNIQUE CLASS OF INFECTIOUS DISEASE SPREADS IN NATURE. THE TEAM WILL CONTINUE TO COMMUNICATE THE RESULTS OF THIS PROJECT THROUGH SCIENTIFIC PUBLICATIONS AND MEETINGS WITH COMMERCIAL AQUACULTURE AND LOCAL NATIVE AMERICAN COMMUNITIES, INCLUDING RESEARCH PARTNERS IN MULTIPLE COAST SALISH TRIBES. UNDERSTANDING THE DISEASE TRANSMISSION PRINCIPLES MAY HELP DEVELOP STRATEGIES TO CONTROL THIS DISEASE, WHICH WOULD DIRECTLY HELP THESE COMMUNITIES. THE TEAM MEMBERS ARE ALSO TRAINING UNDERGRADUATE STUDENTS DURING SUMMER RESEARCH EXPERIENCES AT PACIFIC NORTHWEST RESEARCH INSTITUTE, WESTERN WASHINGTON UNIVERSITY, AND BIGELOW LABORATORY FOR OCEAN SCIENCES. TO UNDERSTAND THE BASIC PRINCIPLES OF THE SPREAD OF BIVALVE TRANSMISSIBLE CANCER, THE TEAM STUDIES TWO SEPARATE LINEAGES IN GEOGRAPHICALLY SEPARATED SPECIES: SOFT-SHELL CLAMS (MYA ARENARIA) ON THE ATLANTIC COAST OF NORTH AMERICA, THE FIRST BIVALVE TRANSMISSIBLE CANCER IDENTIFIED; AND BASKET COCKLES (CLINOCARDIUM NUTTALLII), A SPECIES ON THE PACIFIC COAST OF NORTH AMERICA, IN WHICH THE TEAM HAS JUST RECENTLY IDENTIFIED BIVALVE TRANSMISSIBLE CANCER. THE TEAM IS DEVELOPING TWO QUANTITATIVE MODELS, ONE FOR THE SPREAD OF DISEASE WITHIN A POPULATION OVER TIME, AND A SECOND TO MODEL THE SPREAD OF CANCER LINEAGES BETWEEN DIFFERENT POPULATIONS. THEY ARE TESTING THESE MODELS WITH REGULAR DISEASE PREVALENCE DATA FROM WILD POPULATIONS FROM MULTIPLE SITES. LABORATORY WORK ON DISEASE PROGRESSION AND TRANSMISSION SUPPORTS DEVELOPMENT AND REFINEMENT OF THESE MODELS BY PROVIDING CRITICAL PARAMETER VALUES AND TESTING WHETHER ENVIRONMENTAL VARIABLES (SUCH AS TEMPERATURE) OR GENETIC VARIABLES (SUCH AS THE RELATEDNESS OF CANCER AND HOST) AFFECT THE SUSCEPTIBILITY AND TIMING OF DISEASE PROGRESSION. THIS PROJECT AIMS TO DEVELOP A QUANTITATIVE UNDERSTANDING OF DISEASE DYNAMICS IN SOFT-SHELL CLAMS AND BASKET COCKLES. ULTIMATELY, IT WILL PROVIDE GENERAL PRINCIPLES THAT UNDERLIE THE SPREAD OF THIS RECENTLY DISCOVERED CLASS OF INFECTIOUS DISEASE. THIS PROJECT WAS FUNDED BY THE DIVISION OF ENVIRONMENTAL BIOLOGY AND THE DIVISION OF OCEAN SCIENCES. 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 | $997.4k | 7/9/23 | ||
| Not listed | $2.0m | 8/12/22 |
GrantNumber | Description | Subgrantee | Prime Award | Dollars Obligated | Updated At |
|---|---|---|---|---|---|
EEIDUNSELLS | Suquamish Indian Tribe Of The Port Madison Reservation | Project Grant 2208081 | $94.6k | 12/29/25 | |
EEIDODONNELL01S | Gloucester Marine Genomics Institute Incorporated | Project Grant 2208081 | $122.2k | 12/29/25 | |
EEIDCRIM01S | Puget Sound Restoration Fund | Project Grant 2208081 | $161.7k | 12/29/25 | |
EEIDROBELDO01S | Bigelow Laboratory For Ocean Sciences | Project Grant 2208081 | $244.7k | 12/29/25 | |
EEIDDIMOND01S | Western Washington University | Project Grant 2208081 | $84.9k | 12/29/25 |