Project Grant 2504334
- The National Science Foundation (NSF) awarded a $494,261 Project Grant under the Biological Sciences program (CFDA 47.074) to the University of North Carolina at Chapel Hill (UNC-CH) to conduct research on frog skin evolution and adaptations. The project aims to: 1) quantify how frog skin has evolved over the past 200 million years in response to abiotic and biotic factors, 2) experimentally test the ability of anuran skin to decouple respiration and water loss, and 3) incorporate...
- This $425,200 Project Grant from the National Science Foundation's Biological Sciences program (CFDA 47.074) supports research at Arizona State University from July 2022 through June 2024 towards understanding responses to climate change and invasion vulnerability in drylands of the southwestern United States and northern Mexico. The research will combine geospatial techniques such as species distribution modeling with a trait-based methodology to assess amphibian species' vulnerability to...
- This $240,000 federal Project Grant award from the National Science Foundation's (NSF) Biological Sciences program (CFDA 47.074) will fund a postdoctoral research fellowship to investigate the role of amphibian skin microbiomes in limiting the growth of deadly fungal pathogens. The research aims to explore the mechanisms by which certain skin microbes inhibit the fungal agents responsible for amphibian population declines, and to pilot the use of "antifungal probiotics" to protect...
- This Project Grant award from the National Science Foundation (NSF) Biological Sciences Program (CFDA 47.074) is funding collaborative research led by Vanderbilt University to investigate how amphibian immune systems develop and adapt across life stages. The $274,765 project aims to: (1) use mathematical models and empirical data to understand how evolutionary history, pathogens, and environment influence T cell receptor diversity in frogs over ecological and evolutionary timescales; (2)...
- Colorado State University was awarded a $121,120 Project Grant from the National Science Foundation Division of Environmental Biology under the Biological Sciences federal grant program (CFDA 47.074) to conduct research from June 1, 2022 through May 31, 2023. The award will support research to test the mechanisms and consequences of an adaptive response to a catastrophic fire and heatwave in stream frogs. Specifically, the researchers will measure physiological, genetic, and other changes that...
- This Project Grant award from the National Science Foundation (NSF) Division of Emerging Frontiers, under the Biological Sciences program (CFDA 47.074), provides $388,992 to the University of Central Florida (UCF) to investigate the evolution of immune strategies across amphibian ontogeny. The key objectives are to: (1) use mathematical models and empirical data to predict when evolutionary history, pathogens, and environment favor T cell diversity within and among amphibian life stages; (2)...
- The National Science Foundation (NSF) Division of Emerging Frontiers awarded a $613,690 Project Grant to the University of Rochester to investigate the evolution of immune investment strategies across amphibian ontogeny. The project, titled "Collaborative Research: INTBIO: The Evolution of Immune Investment Strategies Across Amphibian Ontogeny," falls under NSF's Biological Sciences (CFDA 47.074) program, which supports basic research to strengthen the nation's scientific enterprise....
- The National Science Foundation (NSF) awarded a $426,255 project grant under the Biological Sciences program (CFDA 47.074) to the University of Texas at Austin to investigate the evolution of immune system development across amphibian life stages. The key objectives are to: (1) use mathematical models and empirical data to predict how evolutionary history, pathogens, and environment influence T cell diversity within and among frog life stages; (2) quantify T cell receptor diversity across...
- The National Science Foundation awarded a $138,000 Project Grant to support research titled "Fluid Homeostasis in the Evolution of Frog Breeding Phenology" from August 1, 2021 through July 31, 2023. The grant was awarded under the Biological Sciences program (CFDA 47.074) to promote progress in the biological sciences and enhance understanding of major problems confronting the nation. Funding will support postdoctoral research examining how fluid homeostasis influences the timing of...
- This National Science Foundation Project Grant award of $240,000 will fund research considering evolutionary responses to temperature variability when predicting risk to climate change and disease in amphibians. The award was made under the Biological Sciences federal grant program (CFDA 47.074) to support a postdoctoral fellowship investigating how the fungal pathogen Batrachochytridium dendrobatidis increases vulnerability of the northern cricket frog to temperature variability. Over a three...
COLLABORATIVE RESEARCH: EVOLVING THICKER SKIN: UNDERSTANDING HOW ADAPTATIONS TO A UNIVERSAL TRADE-OFF DICTATE THE CLIMATE VULNERABILITY AND ECOLOGY OF AN IMPERILED VERTEBRATE CLADE -CLIMATE CHANGE IS PUSHING MANY ORGANISMS TOWARDS THEIR LIMITS, FORCING SPECIES TO MOVE, EVOLVE, OR RISK EXTINCTION. FROGS ARE AMONG THE MOST VULNERABLE SPECIES ON THE PLANET WITH ROUGHLY A THIRD ALREADY UNDER THREAT OF EXTINCTION. FROGS, AND OTHER AMPHIBIANS, CAN BREATHE ACROSS THEIR SKIN. HOWEVER, THEIR PERMEABLE SKIN LEAVES FROGS SENSITIVE TO CHANGES IN TEMPERATURE AND HUMIDITY, WHICH IS EXPECTED WITH CLIMATE CHANGE. THUS, UNDERSTANDING FROG SKIN IS KEY TO UNDERSTANDING HOW FROGS WILL REACT TO CLIMATE CHANGE. YET, KNOWLEDGE OF ANURAN SKIN EVOLUTION IS SURPRISINGLY LACKING. THIS PROJECT AIMS TO MEASURE VARIATION IN SKIN FORM AND PERMEABILITY AND DETERMINE HOW SKIN VARIATION AFFECTS KEY SURVIVAL TRAITS, LIKE THEIR ABILITY TO BREATHE AND AVOID DEHYDRATION. THIS PROJECT ACCOMPLISHES A MAJOR GOAL IN ECOLOGY BY INCORPORATING ORGANISMAL PHYSIOLOGY INTO PREDICTIONS OF CLIMATE VULNERABILITY WHILE SIMULTANEOUSLY EXPANDING OUR KNOWLEDGE OF A CRITICALLY THREATENED ANIMAL GROUP. FURTHERMORE, FROG ?SKIN BREATHING? PROVIDES A FRAMEWORK TO COMMUNICATE COMPLEX TOPICS RANGING FROM EVOLUTION (E.G., CONVERGENCE AND ADAPTATION) TO PHYSIOLOGY (E.G., OXYGEN TRANSFER AND WATER LOSS) TO CONSERVATION (E.G., CLIMATE CHANGE). THIS PROJECT WILL: 1) MENTOR NATIVE AMERICAN STUDENTS AT USU AND HISTORICALLY EXCLUDED STUDENTS AT ISU IN RESEARCH AND 2) GENERATE A LOW-COST, INTERACTIVE, AND PUBLICLY ACCESSIBLE FROG SKIN ACTIVITY FOCUSED ON INQUIRY AND DISCOVERY-BASED LEARNING OF EVOLUTIONARY CONCEPTS. THE WORK SEEKS TO UNDERSTAND HOW A UNIVERSAL CONSTRAINT UNDERLYING GAS EXCHANGE DICTATES CLIMATE VULNERABILITY AND ECOLOGY IN AN IMPERILED VERTEBRATE CLADE. BALANCING THE NEED FOR GAS EXCHANGE WITH THE RISK OF DEHYDRATION CREATES PREDICTABLE EVOLUTIONARY TRADE-OFFS ACROSS THE TREE OF LIFE AND HAS SELECTED FOR ADAPTATIONS THAT DECOUPLE GAS EXCHANGE FROM WATER LOSS (E.G. UNIQUE NASAL MORPHOLOGIES IN MAMMALS AND BIRDS, STOMATA DENSITY AND SIZE IN PLANTS). DESPITE UNDERSTANDING THE ROLE OF THESE CLADE-SPECIFIC ADAPTATIONS FOR PROMOTING LIFE IN XERIC ENVIRONMENTS,RELATIVELY LITTLE IS KNOWN ABOUT THE EVOLUTION OF UNIVERSAL STRUCTURES, SUCH AS SKIN. WITH THEIR NEARLY WORLDWIDE DISTRIBUTION AND RELIANCE ON THEIR SKIN FOR GAS EXCHANGE, ANURANS ARE AN IDEAL SYSTEM TO INVESTIGATE HOW SKIN HAS EVOLVED TO BALANCE OXYGEN UPTAKE AND WATER LOSS IN RESPONSE TO VARYING ENVIRONMENTAL SELECTION PRESSURES. THE PROPOSED PROJECT HAS THREE AIMS: 1) QUANTIFY HOW FROG SKIN HAS EVOLVED OVER THE PAST 200 MILLION YEARS AND IN-RESPONSE TO WHAT ABIOTIC AND BIOTIC FACTORS, 2) EXPERIMENTALLY TEST ANURAN SKIN?S ABILITY TO DECOUPLE RESPIRATION AND WATER LOSS, AND 3) INCORPORATE PHYSIOLOGICAL DATA INTO ACTIVITY BUDGET MODELS TO IMPROVE AN UNDERSTANDING OF CURRENT ANURAN DISTRIBUTIONS AND LIFE-HISTORY EVOLUTION AND PREDICT SPECIES? VULNERABILITY TO FUTURE CLIMATE CHANGE. OUR INTEGRATION OF MORPHOLOGY, PHYSIOLOGY, AND MODELING WILL TIE SKIN FORM AND PHYSIOLOGY TO ANURAN ECOLOGY AND BIOGEOGRAPHY TO IMPROVE OUR UNDERSTANDING OF ANURAN DISTRIBUTIONS, LIFE-HISTORY EVOLUTION, AND SPECIES? VULNERABILITY TO FUTURE CLIMATE CHANGE. 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 | $461.9k | 1/15/25 |