Project Grant 2343222
- This $297,369 National Science Foundation award under the Geosciences program (CFDA 47.050) will fund research evaluating the contribution of small eukaryotes to nitrate-based new production in the North Pacific Subtropical Gyre. Over a three-year period ending November 2025, the University of Hawaii at Manoa will conduct laboratory and ship-based research to better understand how phytoplankton access subsurface nitrogen in surface waters during summer months. Researchers will sort phytoplankton...
- This $309,557 federal Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) supports a collaborative research project at the University of Texas at Austin to investigate the fate of nitrogen in amino acids and the processes that contribute to the formation of refractory dissolved organic nitrogen (DON) in the ocean. The study will use stable isotope probing with 15N-labeled amino acids and controlled incubations to trace the fate of different amino acids as...
- This $442,689 project grant from the National Science Foundation Division of Ocean Sciences Geosciences program (CFDA 47.050) will fund research evaluating the contribution of small eukaryotes to nitrate-based new production in the North Pacific Subtropical Gyre. The grantees, led by the University of Connecticut Office of Sponsored Programs, will investigate how phytoplankton access subsurface nitrogen at Station ALOHA in the North Pacific Subtropical Gyre. Researchers will sort phytoplankton...
- This $491,093 National Science Foundation Division of Ocean Sciences Project Grant supports research evaluating the contribution of small eukaryotes to nitrate-based new production in the North Pacific Subtropical Gyre. The grantees, led by Principal Investigator Granger at the University of North Carolina at Chapel Hill, will investigate how phytoplankton access subsurface nitrogen at Station ALOHA in the North Pacific Subtropical Gyre. The researchers will sort phytoplankton by size and...
- This Project Grant award from the National Science Foundation's (NSF) Division of Ocean Sciences, under the Geosciences program (CFDA 47.050), will investigate the photochemical breakdown of marine dissolved organic matter (DOM) and its impact on the global carbon cycle. The $683,778 award, valid from July 2023 to June 2026, will focus on studying the production rates and quantum yields of one and two-carbon photoproducts, such as carbon monoxide, dissolved inorganic carbon, formaldehyde, and...
- This Project Grant award from the National Science Foundation Division of Ocean Sciences, under the Geosciences program (CFDA 47.050), provides $869,346 to the Woods Hole Oceanographic Institution to study nitrogen cycling and nitrous oxide production in the Atlantic Ocean. The key products and services to be delivered through this 3-year project include: Measuring and mapping the distribution and isotopic composition of nitrous oxide in the Atlantic interior using a large dataset of over 950...
- This $283,615 Project Grant award from the National Science Foundation's Geosciences program (CFDA 47.050) supports research at Coastal Carolina University to study the fate of nitrogen in amino acids and the processes that contribute to the formation of refractory dissolved organic nitrogen (DON) in the ocean. Using stable isotope probing with 15N-labeled amino acids, the research team will trace the transformation of different amino acids into inorganic forms, labile DON, and refractory DON...
- This $300,785 federal Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) supports a research project to characterize the chemical composition and bioavailability of dissolved organic matter released by marine nitrifying microorganisms. The project aims to determine how this material contributes to carbon cycling in the deep ocean, which may help improve biogeochemical models and inform potential marine carbon dioxide removal activities. The research will...
- This Project Grant award of $569,435 from the National Science Foundation's Geosciences Program (CFDA 47.050) supports collaborative research at Northeastern University to investigate the impact of plastic-derived dissolved organic carbon (PDOC) on the ocean's biological carbon pump. The core hypothesis being tested is that bacteria consuming PDOC compete with phytoplankton for key nutrients like nitrogen and phosphorus, reducing new production and the strength of the biological carbon pump,...
- This $419,968 Project Grant awarded by the National Science Foundation's Geosciences Program (CFDA 47.050) will support a collaborative research effort to examine the biogeochemistry of dissolved organic sulfur (DOS) in the Pacific Ocean. The project aims to accurately quantify the DOS inventory across the Pacific, determine the specific compounds that comprise DOS, and investigate the critical roles DOS plays in oceanic and atmospheric processes. The research will utilize archived samples...
COLLABORATIVE RESEARCH: CONTRIBUTION OF ALLOCHTHONOUS DISSOLVED ORGANIC NITROGEN TO BIOLOGICAL NITROGEN DEMAND IN THE SUBTROPICAL NORTH PACIFIC -VAST STRETCHES OF THE OCEAN, COVERING ALMOST 60% OF ITS SURFACE, ARE ?DESERTS' WHERE LIFE STRUGGLES TO SURVIVE DUE TO NUTRIENT SCARCITY. LOCATED IN THE CENTRAL GYRES OF THE SUBTROPICAL OCEAN, THESE REGIONS ARE TOO REMOTE TO RECEIVE SIGNIFICANT NUTRIENT INPUTS FROM LAND OR FROM DEEPER WATERS BY VERTICAL MIXING. THE LOW SUPPLY OF NUTRIENTS SHOULD RESULT IN REDUCED LEVELS OF PHOTOSYNTHESIS AND LESS COMPLEX FOOD WEBS. HOWEVER, OBSERVATIONS INSTEAD INDICATE THAT LIFE GROWS AT RATES SIMILAR TO REGIONS WHICH RECEIVE HIGHER NUTRIENT SUPPLIES. OUR PROJECT SEEKS TO DETERMINE WHAT THE MISSING SOURCES OF NUTRIENTS ARE THAT HELP SUSTAIN THESE ECOSYSTEMS. THIS WORK WILL FOCUS ON NITROGEN BOUND WITHIN DISSOLVED ORGANIC MOLECULES THAT ARE PRODUCED IN NUTRIENT-RICH REGIONS, INCLUDING COASTAL CALIFORNIA, AND THEN TRANSPORTED LATERALLY TO THE ?OCEAN DESERT? OF THE SUBTROPICAL NORTH PACIFIC OCEAN. A ONE-MONTH RESEARCH EXPEDITION WILL LEAVE FROM SAN DIEGO, CA AND END IN HONOLULU, HI USA TO STUDY THE PRODUCTION, ACCUMULATION, CHEMICAL COMPOSITION, AND UTILIZATION OF DISSOLVED ORGANIC NITROGEN (DON) AND LINK IT TO PHOTOSYNTHESIS OCCURRING ACROSS THE NORTH PACIFIC. THE NEW KNOWLEDGE GAINED ABOUT THE ROLE OF DON IN SATISFYING THE NUTRIENT REQUIREMENTS OF THE SUBTROPICAL NORTH PACIFIC WILL BE USED TO CONSTRUCT COMPUTER MODELS THAT GAUGE THE GLOBAL IMPORTANCE OF THIS NUTRIENT SOURCE TO SUBTROPICAL OCEAN ECOSYSTEMS. ADDITIONAL NITROGEN (N) SOURCES BEYOND SUBSURFACE NITRATE (NO3-) AND N2 FIXATION FLUXES ARE REQUIRED TO EXPLAIN OBSERVED NET COMMUNITY PRODUCTION (NCP) WITHIN SUBTROPICAL OCEAN ECOSYSTEMS. NUMERICAL MODELS INDICATE THAT LATERALLY SUPPLIED ALLOCHTHONOUS DON MAY SUPPORT 10-60% OF NCP IN OLIGOTROPHIC SUBTROPICAL GYRES, BUT WITH LARGE UNCERTAINTIES. THE PROPOSED WORK WILL FIELD TEST HYPOTHESES CONCERNING THE BIOLOGICAL PRODUCTION AND CONSUMPTION OF MARINE DON, AND WHETHER ALLOCHTHONOUS DON IS A SIGNIFICANT ORGANIC NUTRIENT SOURCE SUSTAINING NCP. A NORTH PACIFIC CRUISE WILL USE OBSERVATIONS OF DON CONCENTRATION, CHLOROPHYLL A CONCENTRATION, AND N ISOTOPES [DON'S 15N/14N RATIO, AND NO3-'S 15N/14N RATIO] TO IDENTIFY REGIONS OF NET DON PRODUCTION AND CONSUMPTION IN THE CONTEXT OF NET AND GROSS BIOLOGICAL PRODUCTIVITY ESTIMATED USING O2/AR AND TRIPLE OXYGEN ISOTOPIC MEASUREMENTS, RESPECTIVELY. NOVEL ORGANIC GEOCHEMISTRY TOOLS WILL BE USED TO IDENTIFY THE MOLECULAR COMPOSITION OF THE ALLOCHTHONOUS DON. THE INFLUENCE OF DEPTH ON DON CONSUMPTION WILL BE INVESTIGATED USING SHIP-BOARD INCUBATIONS THAT EXPOSE SURFACE DON COLLECTED ACROSS GRADIENTS IN SURFACE NO3- TO MICROBIAL COMMUNITIES FROM SEVERAL DEPTH INTERVALS. FINALLY, A NEW SEMI-LABILE DON TRACER WILL BE ENCODED IN A GLOBAL OCEAN BIOGEOCHEMISTRY MODEL, FASHIONED TO BEHAVE LIKE THE ALLOCHTHONOUS DON CHARACTERIZED FROM THE FIELD OBSERVATIONS. THE DON AND ISOTOPIC DATA SETS WILL SERVE TO CONSTRAIN MODEL PARAMETERIZATIONS OF SEMI-LABILE DON CYCLING. THE STATE-OF-THE-ART MODEL OF SEMI-LABILE DON CYCLING WILL BE USED TO QUANTITATIVELY ASSESS THE PORTION OF NCP SUSTAINED BY ALLOCHTHONOUS DON DELIVERY TO THE NORTH PACIFIC SUBTROPICAL GYRE AND EXTEND THIS ASSESSMENT ACROSS THE GLOBAL OCEAN. 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 | $119.3k | 8/26/25 | ||
| Not listed | $124.4k | 7/9/25 | ||
| Not listed | $155.3k | 1/11/24 |