This three-year National Science Foundation project grant of $140,899 will fund research into the impact of horizontal gene transfer on the evolution of antibiotic resistance in bacterial communities. The NSF Division of Environmental Biology awarded the grant on February 1, 2022 under the Biological Sciences program (CFDA 47.074) to investigate how plasmid-borne genes coding for beta-lactam antibiotic resistance evolve when transferred between Escherichia coli, Salmonella enterica, and...
This three-year, $321,668 Project Grant from the National Science Foundation's Division of Emerging Frontiers will fund research into the impact of horizontal gene transfer on genetic evolution in bacteria. Awarded to Yale University on February 1, 2022 and set to be completed by January 31, 2025, this grant supports work under the Biological Sciences program (CFDA 47.074). Specifically, the grant will further the biological sciences and understanding of major problems by funding three aims....
This Project Grant award from the National Science Foundation (CFDA 47.074 Biological Sciences program) provides $325,751 to Williams College to identify, characterize, and engineer plasmid-encoded modulators of natural plasmid transformation in the bacterium Vibrio natriegens. The research will examine how plasmid sequence parameters such as size, genetic cargo, and replication origins impact the efficiency of plasmid natural transformation - the process by which bacteria take up DNA from their...
This three-year National Science Foundation project grant of $799,491 will fund research into the role of horizontal gene transfer in the evolution of antibiotic resistance among bacterial communities. The University of Washington will receive the funding to conduct three related research aims. First, the researchers will propagate communities of Escherichia coli, Salmonella enterica, and Klebsiella pneumoniae bacteria and monitor the evolution of a plasmid-borne gene conferring beta-lactam...
The National Science Foundation (NSF) has awarded a $240,000 Project Grant under the Biological Sciences program (CFDA 47.074) to support a 3-year NSF Postdoctoral Research Fellowship in Biology. The fellowship will fund research and training focused on investigating the process of horizontal gene transfer (HGT) in bacterial communities. The research aims to create a detailed map of how mutations in specific plasmid genes impact a plasmid's ability to spread horizontally between bacteria, as...
This National Science Foundation (NSF) Project Grant under the CFDA program "Biological Sciences" (47.074) is awarded to Trustees of Boston University to develop and optimize optogenetic tools for selecting bacterial cells based on dynamic, time-varying traits. The $796,158 award, effective August 1, 2023 through July 31, 2026, supports the researchers in creating light-inducible genetic constructs that trigger antibiotic resistance, enabling the isolation of bacteria exhibiting...
This $376,301 project grant awarded by the National Science Foundation's Biological Sciences program (CFDA 47.074) supports research at the University of Rochester aimed at developing a practical approach for controlling and stabilizing microbial communities. The project leverages plasmid conjugation to dynamically balance microbial growth rates and composition, creating programmable microbial populations that can maintain stability across diverse conditions. Key objectives include computational...
This Project Grant award from the National Science Foundation (NSF) Biological Sciences program (CFDA 47.074) provides $299,758 to the University of Washington to develop a novel method for estimating bacterial evolutionary histories. The key products and services to be delivered under this 2-year award include: Implementing and benchmarking a new mathematical approach for averaging gene-level phylogenies to obtain overall phylogenies for bacteria and archaea, even when not all genes are...
This National Science Foundation (NSF) Biological Sciences program (CFDA 47.074) Project Grant award of $240,000 will fund a 3-year postdoctoral fellowship to research the adaptive response of bacteria to bacteriophage infection and high hydrostatic pressure. The fellow will develop novel fluorescence microscopy techniques to quantify bacterial growth, cell size, and morphology under these environmental stressors using model organisms E. coli, P. aeruginosa, and S. piezotolerans. The project...
This National Science Foundation (NSF) Biological Sciences (CFDA 47.074) project grant awarded to Baylor College of Medicine seeks to uncover the specific genes that confer antibiotic resistance in E. coli through a novel approach inspired by statistical physics. The $1,534,925 award spanning Aug 2024 to Jul 2027 will grow E. coli cultures and analyze the mutational ensemble using thermodynamic principles to predict the genes underlying antibiotic resistance. This technique aims to bridge...