Project Grant 2243970
- This $988,130 project grant awarded by the National Science Foundation's Biological Sciences program focuses on advancing understanding of the evolutionary history and ecological adaptations of the Montiaceae plant family. Led by researchers at Yale University, the project will construct a comprehensive phylogeny (evolutionary tree) for the Montiaceae, which contains ~250 species of annual and perennial herbs found across diverse environments like deserts, mountains, and Mediterranean regions....
- This collaborative research project grant, funded by the National Science Foundation's Division of Environmental Biology under the Biological Sciences program (CFDA 47.074), was awarded to the Smithsonian Institution on October 1, 2025, for $166,798. The three-year project (completion date: September 30, 2028) will advance scientific understanding of how river systems influenced the formation of the Isthmus of Panama and the subsequent evolution of aquatic plant species. The research will...
- This $100,000 Project Grant award, funded by the National Science Foundation (NSF) Division of Environmental Biology under the Biological Sciences CFDA program, will support research to improve the representation of plants in ecosystem models. The key products and services to be delivered under this 3-year award include: Investigating methods to estimate plant traits using evolutionary histories to improve the parameterization of vegetation hydraulic traits in hydrologic and ecosystem models....
- The National Science Foundation (NSF) Division of Environmental Biology awarded a $799,458 Project Grant to the University of Florida (UF) for the 3-year period from January 1, 2024 to December 31, 2026. The grant is part of NSF's Biological Sciences program (CFDA 47.074) and will fund collaborative research to integrate plant traits, phylogenies, and distributional data to forecast the risks and resilience of North American plant communities in response to climate and land use changes. The...
- This Project Grant award from the National Science Foundation's (NSF) Biological Sciences (CFDA 47.074) program provides $210,322 to the University of Georgia Research Foundation, Inc. (UGA Research Foundation) to conduct collaborative research on how local adaptation and climatic extremes will shape continental-scale changes in the distribution and abundance of two common tundra plant species under climate change. The award will fund long-term monitoring of wild populations of Silene acaulis...
- This two-year, $276,000 Project Grant from the National Science Foundation will fund research investigating the early stages of species diversification. The awardee will conduct integrative research examining how an organism's local environment shapes the evolution of its physical traits and genetic makeup. Specifically, the awardee will characterize incipient divergence among flowering plants by examining floral trait variation in the recently radiating Castilleja genus. Genomic and...
- This National Science Foundation project grant of $352,942 supports research into the ecological and evolutionary responses of the iconic California poppy to increasing aridity across its range from 2023 to 2027. The University of Connecticut, as prime awardee, will conduct field observations, greenhouse experiments, population genetics analyses, and species distribution modeling to improve predictions of species persistence under climate change. Researchers will study genetic variation in...
- This Project Grant award from the National Science Foundation's (NSF) Biological Sciences program (CFDA 47.074) provides $240,000 in funding over 3 years starting June 1, 2025 to investigate how an alpine plant species in the Rocky Mountains will respond and adapt to climate change. The research aims to understand how population responses to microclimate variation impact range shifts under climate change scenarios. The project will use field and greenhouse experiments, genetic analyses, and...
- This Project Grant from the National Science Foundation's $370,704 Biological Sciences program (CFDA 47.074) will fund research into unraveling the origin of vegetative desiccation tolerance in vascular plants. Virginia Polytechnic Institute and State University will collaborate on identifying the genetic and metabolic networks controlling vegetative desiccation tolerance and inferring its evolutionary origin. Specifically, the researchers will determine global transcriptional and metabolic...
- This $599,996 Project Grant was awarded by the National Science Foundation's Geosciences program (CFDA 47.050) to Baylor University on April 1, 2024. The project, titled "Cells to Ecosystems: Fossil Xylem is the Missing Link in Reconstructing Water Use by Plants, Forests, and Global Vegetation in Deep Time", aims to establish a database of plant stem traits from fossil xylem to understand how plant communities responded to major ancient climate change events. Key objectives include...
COLLABORATIVE RESEARCH: DID THE NEOGENE ARIDIFICATION DRIVE ADAPTIVE ECOLOGICAL RADIATION IN AN ANCIENT PLANT LINEAGE? -LIVING ORGANISMS THAT EVOLVED HUNDREDS OF MILLIONS OF YEARS AGO ARE OFTEN CONSIDERED RELICS OR LIVING FOSSILS BECAUSE THEY SEEM UNCHANGED FROM THEIR EXTINCT, FOSSILIZED PROGENITORS. OF ALL ANCIENT TAXA REGARDED AS LIVING RELICS, CYCADS ARE PARTICULARLY NOTABLE BECAUSE RECENT EVIDENCE SUGGESTS EXTANT CYCADS MAY NOT BE RELICS AT ALL, BUT INSTEAD EVOLVED DURING THE NEOGENE PERIOD (~20MY AGO). THIS TIME PERIOD WAS CHARACTERIZED BY DECLINING TEMPERATURES, ATMOSPHERIC CO2 CONCENTRATIONS, AND THE EXPANSION OF ARID REGIONS. THIS RESEARCH ASKS WHETHER NEOGENE CLIMATE CHANGE DROVE THE DIVERSIFICATION OF CYCADS AS THEY EVOLVED THEIR ANATOMY AND PHYSIOLOGY IN RESPONSE TO THE NEW CONDITIONS. THIS INTEGRATIVE APPROACH THAT SPANS FROM CELLS TO WHOLE PLANTS WILL PROVIDE A NOVEL PERSPECTIVE ON CYCAD EVOLUTION AND TEST WHETHER THIS ANCIENT LINEAGE EXPERIENCED CONCURRENT AND PARALLEL EVOLUTION ON MULTIPLE CONTINENTS HUNDREDS OF MILLIONS OF YEARS AFTER THE ORIGIN OF CYCADS. THE PROPOSED WORK IS ESPECIALLY CRITICAL BECAUSE CYCADS ARE AMONG THE MOST ENDANGERED PLANT GROUPS ON EARTH, WITH ~70% OF SPECIES THREATENED WITH EXTINCTION, PRIMARILY DUE TO HABITAT DESTRUCTION AND POACHING. PERHAPS NO OTHER LINEAGE OF PLANTS DISAPPEARING AT SUCH AN ALARMING RATE CAN PROVIDE AS UNIQUE AN OPPORTUNITY TO EXAMINE ONE OF THE EARLIEST EXPERIMENTS OF SEED PLANT EVOLUTION, AND OUR RESULTS WILL DIRECTLY INFORM CONSERVATION PRACTICES. THIS PROJECT WILL PROVIDE RESEARCH EXPERIENCES FOR GRADUATE STUDENTS AND UNDERGRADUATES AT UNIVERSITY OF WISCONSIN-MADISON AND FLORIDA INTERNATIONAL UNIVERSITY, ONE OF THE NATION'S LARGEST HISPANIC SERVING INSTITUTIONS, AS WELL AS RESEARCH-DRIVEN FIELD COURSES FOR UNDERGRADUATES. THIS RESEARCH WILL UNCOVER THE ECOLOGICAL AND EVOLUTIONARY PROCESSES THAT HAVE GENERATED THE EXTANT DIVERSITY OF ONE OF THE OLDEST AND MOST UNUSUAL GROUPS OF SEED PLANTS, THE CYCADS. TO DETERMINE WHETHER NEOGENE DIVERSIFICATION OF CYCADS WAS ENABLED BY ADAPTIVE TRAIT EVOLUTION, THE PROJECT WILL: (A) CHARACTERIZE THE DIVERSITY OF CYCAD ANATOMICAL TRAITS (E.G. ANATOMICAL TRAITS OF STOMATA, BUNDLE SHEATH EXTENSIONS, TRANSFUSION TISSUE, AND XYLEM) AND TEST THEIR IMPACTS ON GAS EXCHANGE AND HYDRAULIC RESPONSES TO ABIOTIC CONDITIONS (E.G. LIGHT, CO2, VPD, DROUGHT), (B) TEST WHETHER THESE ANATOMICAL AND PHYSIOLOGICAL TRAITS ARE LINKED TO SPECIES? DISTRIBUTIONS IN CLIMATE SPACE, AND (C) DETERMINE WHETHER THE TIMING AND ORDER OF TRAIT EVOLUTION CORRESPONDED TO NEOGENE CLIMATE CHANGE. BY LEVERAGING THE UNUSUAL ANATOMICAL TRAIT COMBINATIONS EXHIBITED BY CYCADS, THIS RESEARCH MAY HAVE FAR REACHING IMPACTS IN PLANT PHYSIOLOGY, ECOLOGY, AND EVOLUTION BY: (A) REVEALING THE SIGNIFICANCE OF ANATOMICAL TRAITS WITH POORLY KNOWN FUNCTION(S) THAT ARE ALSO FOUND IN OTHER PLANT GROUPS (E.G., BUNDLE SHEATH EXTENSIONS, TRANSFUSION TISSUE), (B) CHARACTERIZING THE FUNCTION OF TRAIT COMBINATIONS THAT ARE EXCEPTIONALLY RARE AMONG EXTANT PLANTS BUT COMMONLY FOUND IN EXTINCT TAXA (E.G., TRACHEIDS AND HOMOGENEOUS PITS) THUS ALLOWING NEW INSIGHT INTO THE FUNCTION OF EXTINCT LINEAGES AND BETTER CONTEXTUALIZING THE SEQUENCE OF PHYSIOLOGICAL TRAIT EVOLUTION IN VASCULAR PLANTS, AND (C) TESTING LONG-STANDING HYPOTHESES ABOUT THE REPEATABILITY AND PREDICTABILITY OF EVOLUTION. 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 | $280.7k | 6/27/25 | ||
| Not listed | $0 | 6/27/25 | ||
| Not listed | $620.7k | 3/13/23 |