Project Grant 2310485
- 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 $1,714,712 Project Grant award from the National Science Foundation's Biological Sciences program (CFDA 47.074) will fund research to critically evaluate the ecological and functional drivers of polyploid establishment in plants. The project aims to use population-level experiments with a model aquatic species under varied stresses to elucidate the mechanisms that allow polyploid species to thrive, especially in stressful habitats. The research will contribute to understanding the formative...
- This Project Grant award from the National Science Foundation (NSF) Biological Sciences program (CFDA 47.074) provides $487,639 to the University of California, Berkeley to conduct long-term monitoring and research on plant community dynamics in the Colorado alpine biome. The project aims to assemble a unique long-term dataset on population and community changes in response to rapid environmental changes, such as climate change, to advance ecological theory and forecasting. Key activities...
- 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....
- This Project Grant award, funded by the National Science Foundation (NSF) Biological Sciences program (CFDA 47.074), supports a postdoctoral research fellowship to investigate the ecological implications of whole genome duplication in plants. The $240,000 award, effective from September 1, 2024 to August 31, 2027, will enable the fellow to develop new phylogenetic comparative methods to understand how whole-genome duplication impacts climatic niche dynamics. The research will leverage existing...
- 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 $299,930 two-year Project Grant from the National Science Foundation Division of Environmental Biology will fund research at the University of Minnesota Duluth to evaluate a drought-driven hypothesis for the origin of obligate apomixis in ferns. Obligate apomixis is a heritable reproductive syndrome in which asexual reproduction occurs through seeds, spores, or eggs, and has evolved repeatedly across diverse organisms. This research will combine genetic, spatial, environmental, and life...
- 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 four-year, $643,306 project grant from the National Science Foundation's Biological Sciences program (CFDA 47.074) will fund research into alternative leaf water use strategies employed by plants in hot environments. The grantee, Desert Botanical Garden Inc., will quantify alternative water use behavior across diverse species to determine how common it is for plants to prioritize leaf cooling over photosynthesis when temperatures are high. The research aims to improve modeling of vegetation...
- This National Science Foundation Project Grant award of $432,000 provides funding from September 1, 2022 through August 31, 2025 under the Biological Sciences federal grant program (CFDA 47.074) to investigate genome fractionation in land plants through comparative genomics research. Dr. Sylvia Kinosian will conduct this research as a postdoctoral fellow hosted by Dr. Michael Barker at the University of Arizona. The research will leverage newly available fern and lycophyte genome sequences...
COLLABORATIVE RESEARCH: UNDERSTANDING THE EFFECTS OF PLOIDAL LEVEL ON RESPONSES TO GLOBAL CHANGE IN PLANTS -POLYPLOIDY, OR WHOLE GENOME DUPLICATION, OCCURS WHEN AN ORGANISM HAS ONE OR MORE EXTRA COPIES OF ALL ITS CHROMOSOMES. THIS PHENOMENON IS PARTICULARLY COMMON IN PLANTS, AND RECENT ESTIMATES SUGGEST THAT 15-30% OF PLANTS ARE POLYPLOID. POLYPLOID SPECIES INCLUDE A VAST NUMBER OF CROP AND OTHER PLANTS WITH ECONOMIC AND AGRICULTURAL USES (E.G., COTTON, WHEAT, POTATO, SOYBEAN). POLYPLOIDY IS KNOWN TO INFLUENCE A WIDE RANGE OF GENETIC AND PHYSIOLOGICAL FEATURES OF PLANTS, INCLUDING PHYSIOLOGICAL TRAITS RELATED TO WATER USE AND PHOTOSYNTHESIS. POLYPLOID PLANTS CAN BE MORE VIGOROUS THAN DIPLOIDS, HAVE BROADER ECOLOGICAL NICHES, WIDER GEOGRAPHIC DISTRIBUTIONS, AND INCREASED ABILITY TO INVADE NEW HABITATS, ALL DRIVEN BY NOVEL GENETIC COMBINATIONS OR GENE EXPRESSION PATTERNS THAT CAN PRODUCE EXTENSIVE CHANGES IN MANY TRAITS. THIS PROJECT WILL INVESTIGATE HOW POLYPLOIDY AFFECTS PLANTS' ABILITY TO RESPOND TO INCREASES IN TEMPERATURE AND DECREASES IN AVAILABLE WATER (I.E., DROUGHT). GENE EXPRESSION AND PHYSIOLOGICAL RESPONSES TO DROUGHT AND TEMPERATURE WILL BE MEASURED FOR A SET OF FERN SPECIES AT DIFFERENT PLOIDAL LEVELS (AMOUNTS OF POLYPLOIDY). KNOWING WHETHER AND HOW PLOIDAL LEVEL IMPACTS THESE IMPORTANT COMPONENTS OF THE EASTERN FORESTS OF THE UNITED STATES WILL ALLOW BETTER PREDICTION OF HOW CHANGES IN TEMPERATURE AND WATER AVAILABILITY WILL INFLUENCE COMMUNITY STRUCTURE IN NATURAL ECOSYSTEMS AND WILL INFORM CONSERVATION EFFORTS. INFORMATION ON GENE EXPRESSION CHANGES INVOLVED IN TOLERANCE OF DROUGHT AND INCREASED TEMPERATURES HAS POTENTIAL TO ASSIST CROP BREEDING PROGRAMS. AN INTEGRAL PART OF THE PROJECT IS TO TRAIN POSTDOCTORAL ASSOCIATES, GRADUATE STUDENTS, AND UNDERGRADUATE STUDENTS. THIS PROJECT FOCUSES ON A SET OF FERN SPECIES FOUND IN FORESTS THROUGHOUT THE EASTERN UNITED STATES. THIS IS A NATURALLY OCCURRING PLANT SYSTEM WHERE POLYPLOIDY IS PREVALENT, AND WHOSE MEMBERS ARE ECOLOGICALLY IMPORTANT IN THE ECOSYSTEMS WHERE THEY OCCUR. GAMETOPHYTES OF SIX DRYOPTERIS SPECIES, INCLUDING TWO PAIRS OF A POLYPLOID AND ITS PARENT TAXA, WILL BE GROWN IN A MULTIFACTORIAL EXPERIMENT WITH DROUGHT AND TEMPERATURE TREATMENTS. DATA WILL BE COLLECTED ON REPRODUCTIVE AND PHYSIOLOGICAL ECOLOGY TO DETERMINE HOW CHANGES IN TEMPERATURE AND WATER AVAILABILITY INFLUENCE DEMOGRAPHICS AND SPOROPHYTE RECRUITMENT FROM GAMETOPHYTES AS WELL AS ABILITY TO RECOVER FROM ENVIRONMENTAL STRESS. RNASEQ WILL BE USED TO GENERATE GENE EXPRESSION PROFILES TO EVALUATE DIFFERENCES BETWEEN UNSTRESSED, DEHYDRATED, AND REHYDRATED GAMETOPHYTES IN DIFFERENT TEMPERATURE TREATMENTS. DATA WILL BE ANALYZED USING NEW METHODS FOR PERFORMING DIFFERENTIAL GENE EXPRESSION ANALYSES ON PER-CELL, PER-BIOMASS, AND PER-TRANSCRIPTOME BASES. RESULTS WILL BE INFORMATIVE IN QUANTIFYING THE EFFECTS OF EXPERIMENTAL TREATMENT ON GENE EXPRESSION IN ORGANISMS AT DIFFERENT PLOIDY LEVELS, INCLUDING IN CROP PLANTS AND NON-PLANT SYSTEMS. THE RESULTS OF THIS WORK WILL IMPROVE THE UNDERSTANDING OF HOW PLOIDAL LEVEL MAY INFLUENCE SPECIES' RESPONSES TO ENVIRONMENTAL CHANGE. A WORKSHOP ON HOW TO EFFECTIVELY AND ENGAGINGLY TEACH PLANT LIFE CYCLES WILL BE HELD AT THE BOTANICAL SOCIETY OF AMERICA'S ANNUAL BOTANY CONFERENCE, AND WILL USE A DATA-DRIVEN APPROACH THAT INCORPORATES RESULTS FROM THE RESEARCH. 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 | $0 | 8/26/25 | ||
| Not listed | $121.0k | 12/29/22 |