Project Grant 2310984
- This National Science Foundation (NSF) Biological Sciences program (CFDA 47.074) Project Grant award of $240,000 provides funding for a postdoctoral research fellowship investigating the rules of life governing interactions between genomes, environment, and phenotypes in the Argentine ant (Linepithema humile), an invasive species with significant negative impacts on native ecosystems and agriculture. The key products and services to be delivered under this award include: Empirical testing of the...
- This Project Grant award of $300,000.00 from the National Science Foundation (NSF) Office of Integrative Activities Program (CFDA 47.083) supports research by the Board of Regents of the University of Nebraska to investigate the relationship between environmental variation and the evolution of cooperative social groups in Australian birds. The project will leverage citizen science data and field experiments to understand how factors like temperature, rainfall, and land use impact group size...
- This $300,002 National Science Foundation project grant funds research examining the reassembly of native ant assemblages following the landscape-scale removal of the introduced Argentine ant from Santa Cruz Island, California. Led by researchers at the University of California, Berkeley, the five-year award will quantify the structural and functional recovery of native ant communities through measuring genetic diversity, species diversity, trophic position, and ecological function. Insights...
- This $1,120,270 National Science Foundation project grant, funded under the Biological Sciences program (CFDA 47.074), will support research into the social and ecological drivers of life history evolution in wild bees. Principal investigator Utah State University will conduct three sets of experiments to investigate how wild bees allocate resources between immunity, reproduction, and longevity as a function of variation in their social and ecological environments. The research aims to determine...
- This $502,986 project grant from the National Science Foundation Division of Emerging Frontiers will fund research at Austin Peay State University under the Biological Sciences federal grant program (CFDA 47.074) to identify genes in mothers of the burying beetle Nicrophorus orbicollis that cause variation in offspring traits linked to fitness. The research aims to study indirect genetic effects, known as social influences, which are theorized to play important roles in phenotypic evolution...
- This award from the National Science Foundation's Biological Sciences program, CFDA 47.074, provides $1,335,651 to The University Of Kentucky Research Foundation to conduct research on speciation with gene flow in a pair of pine-feeding insect species. The project aims to understand how some species can maintain genetic differences despite ongoing gene exchange. Key research activities include: Larval diet manipulations and transcriptome analyses to quantify reproductive isolation and...
- This National Science Foundation (NSF) Project Grant award under the Biological Sciences program (CFDA 47.074) will provide $380,238 to Kennesaw State University Research And Service Foundation, Inc. (KSU R&SF) over 3 years starting on October 1, 2024. The project will study the maintenance of alternative reproductive tactics in a species of two-lined salamanders in urban streams around Atlanta, Georgia. The key products and services to be delivered include: Developing and using genotyping...
- The National Science Foundation (NSF) Division of Environmental Biology awarded a $642,713 Project Grant to the University of Central Florida (UCF) for the collaborative research project "RUI: The Influence of Ants on Regional-Scale Soil Carbon Dynamics". The research aims to advance the understanding of how abundant insects like ants affect soil conditions and microbial communities, which in turn impact soil carbon content at regional scales. The project involves a controlled field...
- This $2,999,187 project grant from the National Science Foundation's Biological Sciences program (CFDA 47.074) supports research at the New Jersey Institute of Technology to understand energetic regulation in distributed biological and engineered systems. Over five years, the researchers will conduct laboratory experiments on ant colonies to study their self-regulation of energy demand and availability under varying conditions. Network models will be developed based on these results to analyze...
- This Project Grant award from the National Science Foundation's Biological Sciences (CFDA 47.074) program provides $558,676 to the University of Arizona to investigate the interactive effects of fire and plant invasion on belowground soil processes and microbiome functions. The project aims to better understand the relationship between weedy plants and wildfires, with a focus on soil microbes and organic matter. The researchers will design inocula containing soil and plant seeds to promote the...
COLLABORATIVE RESEARCH: INTEGRATIVE APPROACH TO UNDERSTANDING THE EMERGENCE OF ALTERNATE SOCIAL PHENOTYPES THROUGH GREENBEARD EFFECTS IN THE FIRE ANT -COOPERATION HAS BEEN A LONGSTANDING EVOLUTIONARY PROBLEM BECAUSE COOPERATORS SUFFER AN INDIVIDUAL FITNESS LOSS TO PROVIDE BENEFITS TO OTHER INDIVIDUALS IN THE GROUP. A NOTABLE SOLUTION TO THIS PROBLEM INVOLVES THE GREENBEARD EFFECT, FIRST CONCEIVED OF BY W.D. HAMILTON IN THE EARLY 1960S AS A THOUGHT EXPERIMENT TO EXPLAIN THE EVOLUTION OF ALTRUISM, AND LATER POPULARIZED BY R. DAWKINS. THE MAIN TENET OF THE GREENBEARD EFFECT IS THAT THERE EXISTS A HYPOTHETICAL GENE, OR SET OF LINKED GENES, THAT EXPRESSES A PERCEPTIBLE TRAIT (E.G., GREEN BEARD), ENABLES THE BEARER TO RECOGNIZE THIS TRAIT IN OTHERS, AND CAUSES THE BEARER TO BEHAVE DIFFERENTLY TOWARDS OTHERS DEPENDING ON WHETHER OR NOT THEY POSSESS THIS TRAIT (E.G., INDIVIDUALS WITH GREEN BEARD HELP OTHER ?GREEN BEARD? INDIVIDUALS BUT NOT ONES WITHOUT GREEN BEARD). IN RECENT YEARS, THESE ?GREENBEARD? GENES HAVE BEEN DISCOVERED IN DIVERSE ORGANISMS. YET, BECAUSE MOST OF THESE ARE UNICELLULAR MICROBES, SUCH AS AMOEBAE, YEAST, AND BACTERIA, WE STILL KNOW LITTLE IF AND HOW THE COMPLEX, INTRICATELY COORDINATED, CONSEQUENTIAL BEHAVIORS EMERGE BASED ON THE GREENBEARD STATUS OF GROUP MEMBERS IN THEIR ENVIRONMENT. THE FIRE ANT, SOLENOPSIS INVICTA, IS ONE OF A FEW SOCIAL ANIMALS IN WHICH A GREENBEARD EFFECT HAS BEEN DOCUMENTED. IN THIS PROJECT, THEREFORE, WE WILL INVESTIGATE THE RELATIONSHIP BETWEEN A GREENBEARD SIGNAL AND THE INDIVIDUAL AND COLLECTIVE BEHAVIORS THAT IT MODULATES, USING THE FIRE ANT, AS A MODEL SYSTEM. A DIVERSITY OF EDUCATIONAL AND OUTREACH PROGRAMS IS PROPOSED, INCLUDING PARTICIPATION IN THE ECOREACH PROGRAM THAT PROVIDES EDUCATIONAL MATERIALS FOR K-12 TEACHERS, OUTREACH AT THE ANNUAL INSECTIVAL AND TO A LIFELONG LEARNING PROGRAM FOR ADULTS, AS WELL AS RESEARCH OPPORTUNITIES FOR GRADUATE STUDENTS AND UNDERGRADUATES, INCLUDING SOME FROM NEARBY HBCUS. SOCIAL ANIMALS WORK TOGETHER TO THE ADVANTAGE OF THEIR GROUP. THIS COOPERATIVE BEHAVIOR POSES AN EVOLUTIONARY PROBLEM, HOWEVER, BECAUSE COOPERATORS TYPICALLY SUFFER AN INDIVIDUAL FITNESS LOSS TO PROVIDE BENEFITS TO OTHER INDIVIDUALS IN THE GROUP. RESEARCHERS HAVE SUGGESTED A POTENTIAL SOLUTION FOR THIS PROBLEM?COOPERATION CAN EVOLVE IF A GENE EXPRESSES A PERCEPTIBLE TRAIT (E.G., GREEN BEARD), ENABLES THE BEARER TO RECOGNIZE THIS TRAIT IN OTHERS, AND CAUSES THE BEARER TO BEHAVE DIFFERENTLY TOWARDS OTHERS DEPENDING ON THE POSSESSION OF THIS TRAIT. THE MAIN OBJECTIVE OF THE PROPOSED PROJECT IS TO INVESTIGATE THE RELATIONSHIP BETWEEN A GREENBEARD SIGNAL AND THE INDIVIDUAL AND COLLECTIVE BEHAVIORS THAT IT MODULATES USING THE RED IMPORTED FIRE ANT, SOLENOPSIS INVICTA, AS A MODEL SYSTEM. THE FIRE ANT IS ONE OF ONLY A FEW SOCIAL ANIMALS IN WHICH A GREENBEARD EFFECT HAS BEEN DOCUMENTED AND THE UNDERLYING GREENBEARD FACTOR, KNOWN AS THE SB SUPERGENE, HAS BEEN IDENTIFIED. USING THIS UNIQUE MODEL SYSTEM, WE AIM TO (1) LEARN WHAT DISTINCTIVE CUTICULAR CHEMICALS CONSTITUTE GREENBEARD SIGNALS IN DIFFERENT CLASSES OF NESTMATES, (2) IDENTIFY CONTEXTS IN WHICH WORKERS USE SUCH SIGNALS DURING ONE-ON-ONE SOCIAL INTERACTIONS, AND (3) REVEAL HOW COLONIES COMPOSED OF WORKERS WITH A MIX OF GREENBEARD GENOTYPES COLLECTIVELY DETERMINE THE EMERGENT COLONY ORGANIZATION. 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 | ($65k) | 4/14/26 | ||
| Not listed | $0 | 3/24/26 | ||
| Not listed | $166.1k | 6/27/23 |