Project Grant 2339824
- This $932,200 Project Grant award from the National Science Foundation's Biological Sciences Program (CFDA 47.074) will support collaborative research at Florida State University to investigate the neurobiology and behavior underlying speciation in upland chorus frogs. The project aims to better understand how changes in brain function and mating behaviors drive the formation of new frog species. Key research activities will include studying neural circuits related to auditory communication...
- This National Science Foundation (NSF) Biological Sciences program (CFDA 47.074) Project Grant award of $533,225 to the University of Tennessee in Knoxville will fund research to understand how behavioral responses allow some animals to cope with the growing challenges posed by extreme heat and rising temperatures. The research will focus on a cavity-nesting bird species thriving in hot, humid environments in the southeastern U.S. Experiments will: 1) identify causes and consequences of...
- This Project Grant award from the National Science Foundation's Biological Sciences program (CFDA 47.074) supports research aimed at incorporating behavioral science insights into models for predicting the eco-evolutionary responses of North American bird species to climate change. The $901,999 award to the University of Texas at Austin, spanning August 2024 to July 2027, will leverage indicators of behavioral flexibility, such as relative brain size, to improve forecasts of changes in...
- 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 Project Grant award was provided by the National Science Foundation's (NSF) Biological Sciences (CFDA 47.074) Federal Grant Program. The grant, awarded on September 15, 2025, totals $611,195.00 and aims to investigate how neuronal circuits in the brain influence mating behaviors and contribute to the formation of new species (speciation) in upland chorus frogs. The research project, conducted by the University of Utah, will explore the relationship between auditory neural circuits and...
- The National Science Foundation (NSF) awarded a $802,385 Project Grant under the Biological Sciences program (CFDA 47.074) to the University of Massachusetts, through its Office of Grant & Contract Administration, for a 4-year research project. The project aims to examine the feedback between the physiological performance and social foraging behavior of wintering songbird populations. The research will: (1) quantify the effects of physiological variation on social network stability; (2)...
- 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...
- This Project Grant award from the National Science Foundation's Biological Sciences program (CFDA 47.074) provides $914,424 to the University of Missouri System to conduct research on the metabolic processes that allow bullfrogs to sustain brain function during extreme conditions of low oxygen and glucose. The research will investigate the hypothesis that bullfrogs can use ketone bodies as an alternative fuel source to glucose during hibernation, representing an unusually large capacity for...
- This Project Grant, awarded by the National Science Foundation's (NSF) Biological Sciences (CFDA 47.074) Federal Grant Program, funds a research project at the University of California, Davis to investigate the mechanisms underlying sex differences and reversals in parental care behavior. The $643,427 grant, awarded on June 1, 2025, will run through January 31, 2026. The project capitalizes on naturally occurring parental flexibility in the neotropical poison frog, Dendrobates tinctorius, to...
- This Project Grant award from the National Science Foundation (NSF) Division of Integrative Organismal Systems, under the Biological Sciences program (CFDA 47.074), provides $785,315 from December 15, 2023 to November 30, 2027 to the University of Houston System. The project aims to develop a four-dimensional genotype-phenotype map of skin coloration in three species of poison frogs, leveraging genomics and developmental biology techniques. The research will identify genes controlling color...
CAREER: THE METABOLIC BASIS OF INDIVIDUAL VARIATION IN BEHAVIOR -INDIVIDUAL DIFFERENCES IN BEHAVIOR SET THE STAGE FOR DIFFERENCES IN THE ABILITY TO FIND FOOD, DEFEND TERRITORIES AND ATTRACT MATES, SO IT IS IMPORTANT TO UNDERSTAND WHAT CAUSES THESE DIFFERENCES. VARIATION IN ENERGY METABOLISM PROBABLY PLAYS AN IMPORTANT ROLE BECAUSE ENERGY DRIVES BEHAVIOR, AND IS ESPECIALLY IMPORTANT FOR BEHAVIORS REQUIRING PEAK PERFORMANCE, SUCH AS MATE ATTRACTION AND ESCAPING FROM PREDATORS. HOWEVER, THE EXACT RELATIONSHIP BETWEEN ENERGY USE AND BEHAVIOR IS STILL POORLY UNDERSTOOD, PARTICULARLY FOR ENERGETICALLY COSTLY NATURAL BEHAVIORS THAT AFFECT FITNESS. TO ADDRESS THIS GAP, THIS PROJECT WILL USE REPEATED MEASUREMENTS OF ENERGY USE AND SIGNALING BEHAVIOR IN A TREEFROG TO DETERMINE HOW THESE TRAITS RELATE TO ONE ANOTHER AND ALLOW THESE FROGS TO PERFORM EXTREMELY CHALLENGING BEHAVIORS. THESE MEASUREMENTS WILL BE MADE UNDER DIFFERENT TEMPERATURES TO DETERMINE HOW ENVIRONMENTAL CONDITIONS COULD MODIFY THE ENERGETIC COSTS OF BEHAVIOR, WHICH COULD HELP TO UNDERSTAND HOW ORGANISMS WILL RESPOND TO CLIMATE CHANGE. THE GENETIC BASIS OF THE RELATIONSHIP BETWEEN ENERGY AND BEHAVIOR WILL BE INVESTIGATED TO DETERMINE HOW THESE TRAITS COULD EVOLVE AND POTENTIALLY IDENTIFY IMPORTANT REGIONS OF THE GENOME AFFECTING ENERGETICS AND PERFORMANCE. THE EDUCATIONAL GOALS OF THIS PROJECT ARE TO BUILD SCIENTIFIC CAPACITY AND KNOWLEDGE, TARGETING MIDDLE SCHOOL STUDENTS? KNOWLEDGE OF BEHAVIORAL ENERGETICS, DATA INTERPRETATION SKILLS AND APPRECIATION FOR THE VALUE OF SCIENTIFIC RESEARCH, AS WELL AS GRADUATE STUDENTS DEVELOPING THEIR MENTORSHIP SKILLS. VARIATION IN BEHAVIORAL EXPRESSION IS OFTEN DRIVEN BY VARIATION IN ENERGETIC PHYSIOLOGY, BUT HOW THESE TRAITS COVARY AND WHETHER THEY DO SO AT THE AMONG- OR WITHIN-INDIVIDUAL LEVEL IS POORLY KNOWN, ACTIVELY DEBATED, AND KEY TO UNDERSTANDING EVOLUTIONARY AND ECOLOGICAL OUTCOMES. THE GOAL OF THIS PROJECT IS TO IDENTIFY THE PHYSIOLOGICAL DRIVERS OF INDIVIDUAL VARIATION IN COMPETITIVE ACOUSTIC SIGNALS IN TREEFROGS, HOW PHYSIOLOGY AFFECTS SIGNALING PLASTICITY IN THE FACE OF ENVIRONMENTAL CHANGE, AND THE GENETIC BASIS OF ENERGY-SIGNAL COVARIANCE. THE PROPOSED APPROACH IS TO 1) DETERMINE THE ENERGETIC BASIS FOR INDIVIDUAL VARIATION IN SIGNALING, USING REPEATED MEASUREMENTS TO QUANTIFY AMONG- AND WITHIN-INDIVIDUAL VARIANCE COMPONENTS IN RESTING METABOLIC RATE AND THE METABOLIC COST OF CALLING, 2) TEST THE COMPETING PREDICTIONS OF DIFFERENT ENERGY ALLOCATION MODELS TO DETERMINE THE METABOLIC BASIS OF VARIATION IN SIGNALING PLASTICITY, 3) DISCOVER THE CONSEQUENCES OF ENVIRONMENTAL TEMPERATURE VARIATION ON BEHAVIORAL ENERGETICS AND ITS UNDERLYING INDIVIDUAL VARIATION AND 4) USE GENOME-WIDE RELATEDNESS MEASURES TO ESTIMATE HERITABILITY AND THE GENETIC COVARIANCE OF THESE TRAITS. TOGETHER, THIS PROJECT WILL ANSWER FUNDAMENTAL QUESTIONS ON THE MECHANISTIC BASIS OF INDIVIDUAL PHENOTYPIC VARIATION AND REPRESENTS A MAJOR ADVANCE IN THESE EFFORTS BY STUDYING A TRAIT THAT IS ENERGETICALLY COSTLY, REPEATABLE, AND UNDER DIRECT SEXUAL SELECTION. THE SCIENTIFIC FINDINGS FROM THIS WORK WILL BE USED TO BUILD A SERIES OF LESSON PLANS AIMED AT TEACHING PRINCIPLES OF BEHAVIORAL ENERGETICS TO MIDDLE SCHOOL SCIENCE STUDENTS, AND TO PROVIDE A STRUCTURED MENTORSHIP TRAINING PROGRAM FOR GRADUATE STUDENTS WORKING WITH UNDERGRADUATE RESEARCHERS. THIS PROJECT IS JOINTLY FUNDED BY THE BEHAVIORAL SYSTEMS CLUSTER AND THE INTEGRATIVE ECOLOGICAL PHYSIOLOGY PROGRAM IN THE DIVISION OF INTEGRATIVE AND ORGANISMAL SYSTEMS, AND THE ESTABLISHED PROGRAM TO STIMULATE COMPETITIVE RESEARCH (EPSCOR). 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 | $368.2k | 7/22/25 | ||
| Not listed | $295.6k | 6/16/25 | ||
| Not listed | $400.0k | 2/8/24 |