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1 to 10 of 18 Results
Dec 15, 2022
Nitin Singh, 2022, "Machine learning algorithm to characterize antimicrobial resistance associated with the International Space Station surface microbiome", https://doi.org/10.48577/jpl.GJ5FL2, microbiome, JPL Open Repository
Background: Antimicrobial Resistance (AMR) has a detrimental impact on humanhealth on Earth and it is equally concerning in other environments such as space dueto microgravity, radiation and confinement, especially for long-distance space travel.The International Space Station (I...
Dec 14, 2022
Nitin Singh, 2022, "Multidrug-resistant Acinetobacter pittii is adapting to and exhibited succession on aboard the International Space Station", https://doi.org/10.48577/jpl.XC5M6S, Microbiome, JPL Open Repository
Monitoring adaptation of microorganisms to the extreme environment of the International Space Station (ISS) is crucial to understanding microbial evolution and determining how to protect astronauts from potential infections. Acinetobacter pittii is an opportunistic nosocomial pat...
Dec 20, 2021
Parker, Ceth W, 2021, "Genomic characterization of Parengyodontium torokii sp. nov., a biofilm-forming fungus isolated from Mars 2020 assembly facility", https://doi.org/10.48577/jpl.POWEDU, Journal of Fungi, JPL Open Repository
A fungal strain (FJII-L10-SW-P1) was isolated from the Mars 2020 spacecraft assembly facility and exhibited biofilm formation on spacecraft-qualified Teflon surfaces. The reconstruction of a five loci gene tree (ITS, LSU, SSU, RPB1 &2, and TEF1) using multi-locus sequence typing...
Oct 12, 2021
Nitin Singh, 2021, "Comparative genomics of novel Agrobacterium tomkonis sp. nov. isolated from the International Space Station", https://doi.org/10.48577/jpl.U3TVGU, mSystems, JPL Open Repository
Strains of Agrobacterium genomospecies 3 (i.e., genomovar G3) have been previously isolated from diverse environments, including in association with plant roots, with algae, as part of a lignocellulose degrading community, from a hospital environment, as a human opportunistic pat...
Sep 9, 2021
Urbaniak, Camilla, 2021, "Simulated microgravity promotes horizontal gene transfer of antimicrobial resistance genes between bacterial genera in the absence of antibiotic selective pressure", https://doi.org/10.48577/jpl.6JJ1KK, Frontiers in Microbiology, JPL Open Repository
Bacteria are able to adapt and survive in harsh and changing environments through many mechanisms, with one of them being horizontal gene transfer (HGT). This process is one of the leading culprits in the spread of antimicrobial resistance within bacterial communities and could p...
Aug 17, 2021
Anna Simpson, 2021, "Draft Genomes of Fungi Isolated from the International Space Station during Microbial Tracking-2 Experiment", https://doi.org/10.48577/jpl.B7PETL, Microbial Research Announcements, JPL Open Repository
As part of the Microbial Tracking-2 study, 94 fungal strains were isolated from surfaces on the International Space Station (ISS) and whole-genome sequences were assembled. Characterization of these draft genomes will allow for evaluation of microgravity adaption, risk to human h...
Aug 17, 2021
Kasthuri Venkateswaran, 2021, "Draft Genome Sequences of Heat-Shock Tolerant Microbes Isolated from a Spacecraft Assembly Facility", https://doi.org/10.48577/jpl.MVLTYD, Microbiological Resource Announcements, JPL Open Repository
Heat-shock tolerant microorganisms belonging to Bacillales and Micrococcales were isolated from the Spacecraft Assembly Facility at the Jet Propulsion Laboratory, and 63 draft genome sequences were assembled and identified. Further analyses of these genomes can provide insight in...
Jun 16, 2021
Kasthuri Venkateswaran, 2021, "Characterization of Spacesuit Associated Microbial Communities and their Implications for Astrobiology Missions", https://doi.org/10.48577/jpl.WGEJXW, Microbiome, JPL Open Repository
Background. The National Aeronautics and Space Administration (NASA) is planning to send humans and spacecraft to search for life on other planets. Much of the scientific preparation for these expeditions centers on finding microbial life. However, both humans and associated obje...
Apr 1, 2021
Anna Simpson, 2021, "Draft Genomes of Various Bacterial Phyla Isolated from the International Space Station", https://doi.org/10.48577/jpl.PBEB9H, Microbial Research Announcements, JPL Open Repository
  Abstract Whole-genome sequences were generated from 96 bacterial strains of 14 species isolated from the International Space Station surfaces during the Microbial Tracking-2 study. Continued characterization of this closed habitat's microbiome enables tracking the spread and ev...
Mar 8, 2021
Blachowicz, Adriana, 2021, "Draft genome sequences of Aspergillus and Penicillium species isolated from the International Space Station and Crew Resupply Vehicle Capsule", https://doi.org/10.48577/jpl.YPTA7J, Microbiology Resource Announcement, JPL Open Repository
The draft whole-genome sequences (WGS) of 30 fungal strains isolated from the International Space Station and belonging to Penicillium and Aspergillus genera were assembled. The WGS will allow for detailed genomic characterization to determine the possible applications and import...
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