Project Grant 2338055
- This $200,000.00 Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) will enable the Regents of the University of California at Riverside to conduct collaborative research evaluating paradigms in phosphorus (P) biogeochemical cycling. The study will determine the role of the atmosphere as a supplier of P, a key soil nutrient, to ecosystems by reconstructing how P cycled over time using lake sediments. The research aims to re-evaluate established paradigms...
- This Project Grant award from the National Science Foundation's Biological Sciences program (CFDA 47.074) supports a collaborative research project to investigate how the availability of marine nutrients may have fueled the expansion and ecological transformation of eukaryotic organisms during the Tonian period (1000-720 million years ago). The $411,079 award, spanning July 2025 to June 2030, involves researchers from five U.S. universities, including one postdoctoral fellow, five graduate...
- This Project Grant award from the National Science Foundation's Biological Sciences (CFDA 47.074) program provides $433,365 to Virginia Polytechnic Institute & State University to conduct collaborative research on how the availability of marine nutrients may have fueled the expansion of eukaryotic organisms and transformed the marine ecosystem during the Tonian period (1000-720 million years ago). The project supports seven principal investigators, one postdoctoral fellow, five graduate...
- This Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) provides $499,036 to The University of Kentucky Research Foundation to investigate the role of phosphorus in stabilizing soil organic matter. The project aims to describe the mechanisms by which organic and inorganic phosphorus control the adsorption and stabilization of mineral-associated organic matter through laboratory and field experiments, spectroscopic and microscopic analysis. The research...
- This Project Grant award, valued at $442,114, was issued by the National Science Foundation (NSF) under the Geosciences Program (CFDA 47.050) to the University of Texas at Austin. The objective of the research is to study how the pelagic calcifier communities in the South Atlantic Subtropical Gyre evolved from the early Eocene to the early Oligocene, and how those changes impacted carbonate production and burial at the seafloor. The project will generate data from sediment cores collected during...
- This three-year, $378,208 National Science Foundation project grant supports research into polyphosphate production and cycling in marine ecosystems through the Geosciences program (CFDA 47.050). The University of California San Diego Scripps Institution of Oceanography will assess the total content and chain length distribution of polyphosphate across microbial groups and environmental conditions in the Pacific Ocean and Mediterranean Sea. Researchers will apply a new phosphorus-targeted mass...
- The National Science Foundation Division of Ocean Sciences awarded $421,600 under the Geosciences federal grant program (CFDA 47.050) to the University of Arizona for the period April 1, 2023 through March 31, 2026. The award will support research into polyphosphate production and cycling in marine ecosystems. Specifically, the university researchers will conduct the first quantitative measurements of polyphosphate in marine microorganisms through laboratory and field studies. They will...
- This $471,604 National Science Foundation project grant will fund research into the origin and expansion of silica biomineralization and its influence on the global silica cycle from 520-440 million years ago. The Regents of the University of Colorado will conduct stable isotope analysis of silicon in the oldest fossils of sponges and radiolarians from western United States geological sites. Researchers will evaluate isotope preservation and build an improved Cambrian-Ordovician silica isotope...
- This Project Grant from the National Science Foundation Division of Earth Sciences totals $656,580 to support research investigating the role of microbialites in Lower-Middle Ordovician reefs of Laurentia. Funded under the Geosciences program (CFDA 47.050), the award will strengthen fundamental knowledge of the integrated Earth system through basic research in the atmospheric, earth, and ocean sciences. Specifically, the grant will fund quantification of framework builders in Early-Middle...
- This Project Grant award from the National Science Foundation's Geosciences Program (CFDA 47.050) will fund collaborative research to develop an integrated framework for understanding the Late Devonian mass extinctions and associated changes in ocean chemistry and climate. The $231,421 award to Texas A&M University aims to: Establish a new geologic framework linking Late Devonian mass extinctions to the formation of epeiric black shale deposits across North and South America using...
CAREER: UNDERSTANDING BIOSPHERE-GEOSPHERE COEVOLUTION THROUGH CARBONATE-ASSOCIATED PHOSPHATE, COMMUNITY ARCHIVES, AND OPEN-ACCESS EDUCATION IN RURAL SCHOOLS -PHOSPHORUS IS AN ESSENTIAL NUTRIENT FOR LIFE. TODAY, PHOSPHORUS EXISTS IN EXTREMELY LOW ABUNDANCE IN THE OCEANS LIMITING THE PRODUCTIVITY OF THE BIOSPHERE. THE MAJORITY OF PHOSPHORUS IS DERIVED FROM WEATHERING OF PHOSPHATE MINERALS FROM CONTINENTS. HOWEVER, FOR THE FIRST ONE TO TWO BILLION YEARS OF EARTH HISTORY, THERE WERE NO CONTINENTS TO WEATHER. SHORTLY AFTER THE FIRST CONTINENTS EMERGED ABOVE SEA LEVEL (~3.2 TO 2.6 BILLION YEARS AGO, GA), MICROBES EVOLVED THE ABILITY TO PERFORM OXYGENIC PHOTOSYNTHESIS, WHICH LED TO AN OXYGEN-RICH ATMOSPHERE AND MASSIVE INCREASE IN PRIMARY PRODUCTIVITY. WAS THE OXYGENATION OF THE OCEANS AND ATMOSPHERE DIRECTLY RELATED TO WEATHERING OF EARTH?S FIRST CONTINENTS? THIS STUDY WILL DEVELOP A RECORD OF THE CONCENTRATION OF PHOSPHORUS IN ANCIENT OCEANS ~2 TO 0.5 GA TO EXAMINE IF THE EVOLUTION OF MARINE MICROORGANISMS WAS LINKED TO WEATHERING OF EARLY CONTINENTS WHEN THE EARTH WAS COVERED IN ICE. ULTIMATELY, PHOSPHORUS ABUNDANCE MAY HAVE ENABLED THE EVOLUTION OF AEROBIC AND MULTICELLULAR ORGANISMS. THE RESEARCH WILL BE INTEGRATED INTO NEW EARTH SCIENCES CURRICULA DEVELOPED WITH LOCAL HIGH SCHOOL TEACHERS FOR NEIGHBORING RURAL DISTRICTS. THE PROJECT WILL DEVELOP OPEN-ACCESS CLASSROOM AND FIELD-BASED LEARNING MODULES AND VIRTUAL FIELD TRIPS THAT CONNECT STUDENTS TO THE CAMBRIAN EXPLOSION?THE EVOLUTION OF MACROSCOPIC ANIMALS?IN THE PENNSYLVANIA LANDSCAPE. THE EFFICACY OF THE NEW CURRICULA WILL BE ASSESSED THROUGH SERIAL KNOWLEDGE ASSESSMENTS IMPLEMENTED BEFORE AND AFTER EXPOSURE AND ?KNOWLEDGE BOOSTS? IN SUBSEQUENT YEARS. MID-ATLANTIC HIGH SCHOOL TEACHERS WILL BE TRAINED IN VARIOUS RESOURCES TO BE IMPLEMENTED IN THEIR CLASSROOMS. MICROBES HAVE BEEN INTIMATELY LINKED TO CARBONATE MINERALS AND THE CHEMICAL EVOLUTION OF EARTH?S SURFACE SINCE LIFE BEGAN. THE METABOLIC INNOVATION OF OXYGENIC PHOTOTROPHY >2 BILLION YEARS AGO CONTRIBUTED TO THE RISE OF OXYGEN, INCREASED GLOBAL PRIMARY PRODUCTIVITY, AND PERMANENTLY CHANGED BIOGEOCHEMICAL CYCLES. HOWEVER, LITTLE IS KNOWN ABOUT WHY MICROBES EVOLVED THE ABILITY TO PHOTOSYNTHESIZE RELATIVELY LATE IN THE HISTORY OF LIFE, AND WHAT CONTROLLED THE PACE OF SUBSEQUENT MICROBIAL EVOLUTION. THE PRIMARY GOAL OF THIS CAREER AWARD IS AN ASSESSMENT OF PHOSPHATE AVAILABILITY?AN ESSENTIAL NUTRIENT FOR ALL LIFE?IN THE ENVIRONMENTS THAT HOST TEXTURAL AND GEOCHEMICAL EVIDENCE FOR PRIMITIVE MICROBES AND EMERGENT METABOLISMS. WAS THE REDUCED PRODUCTIVITY OF THE MESOPROTEROZOIC A SYMPTOM OF A PHOSPHATE RESERVOIR DEPLETED BY OXYGENIC PHOTOTROPHS? WAS THE EVOLUTION OF CROWN GROUP EUKARYOTES AND METAZOANS FERTILIZED BY WEATHERING-DERIVED PHOSPHATE FROM NEOPROTEROZOIC GLOBAL GLACIATIONS AND THE BREAKUP OF SUPERCONTINENTS? THIS PROJECT TESTS THE HYPOTHESIS THAT ENHANCED PHOSPHATE AVAILABILITY WAS ESSENTIAL TO THE EVOLUTION OF EUKARYOTES AND METAZOANS BY RECONSTRUCTING SEAWATER [P] VIA CARBONATE-ASSOCIATED PHOSPHATE (CAP) ON EXISTING PRECAMBRIAN SAMPLE SETS WITHIN THE CONTEXT OF PROTEROZOIC GLOBAL GLACIATIONS, TECTONICS, AND EXISTING TEMPORAL AND DIAGENETIC FRAMEWORKS. THE RESEARCH WILL IMPROVE OUR UNDERSTANDING OF CAP AND ITS UTILITY FOR GEO- AND ASTROBIOLOGY BY (1) ANALYZING CAP IN THE SAME PRECAMBRIAN SAMPLES THAT HAVE A WEALTH OF EXISTING DIAGENETIC AND GEOCHEMICAL DATA, AND (2) PERFORMING GROWTH EXPERIMENTS TO DEVELOP MINERAL-SPECIFIC CAP-[P]SEAWATER CALIBRATIONS. 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 | $395.5k | 8/26/25 | ||
| Not listed | $197.3k | 6/5/25 | ||
| Not listed | $210.3k | 2/12/24 |