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Comparative genomic analysis of Cohnella hashimotonis sp. nov. isolated from the International Space Station

A single strain from the family Paenibacillaceae was isolated from the wall behind the Waste Hygiene Compartment aboard the International Space Station (ISS) in April 2018, as part of the Microbial Tracking mission series. This strain was identified as a gram-positive, rod-shaped, oxidase-positive,...

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Autores principales: Simpson, Anna C., Eedara, V. V. Ramprasad, Singh, Nitin K., Damle, Namita, Parker, Ceth W., Karouia, Fathi, Mason, Christopher E., Venkateswaran, Kasthuri
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10308117/
https://www.ncbi.nlm.nih.gov/pubmed/37396358
http://dx.doi.org/10.3389/fmicb.2023.1166013
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author Simpson, Anna C.
Eedara, V. V. Ramprasad
Singh, Nitin K.
Damle, Namita
Parker, Ceth W.
Karouia, Fathi
Mason, Christopher E.
Venkateswaran, Kasthuri
author_facet Simpson, Anna C.
Eedara, V. V. Ramprasad
Singh, Nitin K.
Damle, Namita
Parker, Ceth W.
Karouia, Fathi
Mason, Christopher E.
Venkateswaran, Kasthuri
author_sort Simpson, Anna C.
collection PubMed
description A single strain from the family Paenibacillaceae was isolated from the wall behind the Waste Hygiene Compartment aboard the International Space Station (ISS) in April 2018, as part of the Microbial Tracking mission series. This strain was identified as a gram-positive, rod-shaped, oxidase-positive, catalase-negative motile bacterium in the genus Cohnella, designated as F6_2S_P_1(T). The 16S sequence of the F6_2S_P_1(T) strain places it in a clade with C. rhizosphaerae and C. ginsengisoli, which were originally isolated from plant tissue or rhizosphere environments. The closest 16S and gyrB matches to strain F6_2S_P_1(T) are to C. rhizosphaerae with 98.84 and 93.99% sequence similarity, while a core single-copy gene phylogeny from all publicly available Cohnella genomes places it as more closely related to C. ginsengisoli. Average nucleotide identity (ANI) and digital DNA–DNA hybridization (dDDH) values to any described Cohnella species are <89 and <22%, respectively. The major fatty acids for strain F6_2S_P_1(T) are anteiso-C(15:0) (51.7%), iso-C(16:0) (23.1%), and iso-C(15:0) (10.5%), and it is able to metabolize a wide range of carbon compounds. Given the results of the ANI and dDDH analyses, this ISS strain is a novel species within the genus Cohnella for which we propose the name Cohnella hashimotonis, with the type strain F6_2S_P_1(T) (=NRRL B-65657(T) and DSMZ 115098(T)). Because no closely related Cohnella genomes were available, this study generated the whole-genome sequences (WGSs) of the type strains for C. rhizosphaerae and C. ginsengisoli. Phylogenetic and pangenomic analysis reveals that F6_2S_P_1(T), C. rhizosphaerae, and C. ginsengisoli, along with two uncharacterized Cohnella strains, possess a shared set of 332 gene clusters which are not shared with any other WGS of Cohnella species, and form a distinct clade branching off from C. nanjingensis. Functional traits were predicted for the genomes of strain F6_2S_P_1(T) and other members of this clade.
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spelling pubmed-103081172023-06-30 Comparative genomic analysis of Cohnella hashimotonis sp. nov. isolated from the International Space Station Simpson, Anna C. Eedara, V. V. Ramprasad Singh, Nitin K. Damle, Namita Parker, Ceth W. Karouia, Fathi Mason, Christopher E. Venkateswaran, Kasthuri Front Microbiol Microbiology A single strain from the family Paenibacillaceae was isolated from the wall behind the Waste Hygiene Compartment aboard the International Space Station (ISS) in April 2018, as part of the Microbial Tracking mission series. This strain was identified as a gram-positive, rod-shaped, oxidase-positive, catalase-negative motile bacterium in the genus Cohnella, designated as F6_2S_P_1(T). The 16S sequence of the F6_2S_P_1(T) strain places it in a clade with C. rhizosphaerae and C. ginsengisoli, which were originally isolated from plant tissue or rhizosphere environments. The closest 16S and gyrB matches to strain F6_2S_P_1(T) are to C. rhizosphaerae with 98.84 and 93.99% sequence similarity, while a core single-copy gene phylogeny from all publicly available Cohnella genomes places it as more closely related to C. ginsengisoli. Average nucleotide identity (ANI) and digital DNA–DNA hybridization (dDDH) values to any described Cohnella species are <89 and <22%, respectively. The major fatty acids for strain F6_2S_P_1(T) are anteiso-C(15:0) (51.7%), iso-C(16:0) (23.1%), and iso-C(15:0) (10.5%), and it is able to metabolize a wide range of carbon compounds. Given the results of the ANI and dDDH analyses, this ISS strain is a novel species within the genus Cohnella for which we propose the name Cohnella hashimotonis, with the type strain F6_2S_P_1(T) (=NRRL B-65657(T) and DSMZ 115098(T)). Because no closely related Cohnella genomes were available, this study generated the whole-genome sequences (WGSs) of the type strains for C. rhizosphaerae and C. ginsengisoli. Phylogenetic and pangenomic analysis reveals that F6_2S_P_1(T), C. rhizosphaerae, and C. ginsengisoli, along with two uncharacterized Cohnella strains, possess a shared set of 332 gene clusters which are not shared with any other WGS of Cohnella species, and form a distinct clade branching off from C. nanjingensis. Functional traits were predicted for the genomes of strain F6_2S_P_1(T) and other members of this clade. Frontiers Media S.A. 2023-06-15 /pmc/articles/PMC10308117/ /pubmed/37396358 http://dx.doi.org/10.3389/fmicb.2023.1166013 Text en Copyright © 2023 Simpson, Eedara, Singh, Damle, Parker, Karouia, Mason and Venkateswaran. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Simpson, Anna C.
Eedara, V. V. Ramprasad
Singh, Nitin K.
Damle, Namita
Parker, Ceth W.
Karouia, Fathi
Mason, Christopher E.
Venkateswaran, Kasthuri
Comparative genomic analysis of Cohnella hashimotonis sp. nov. isolated from the International Space Station
title Comparative genomic analysis of Cohnella hashimotonis sp. nov. isolated from the International Space Station
title_full Comparative genomic analysis of Cohnella hashimotonis sp. nov. isolated from the International Space Station
title_fullStr Comparative genomic analysis of Cohnella hashimotonis sp. nov. isolated from the International Space Station
title_full_unstemmed Comparative genomic analysis of Cohnella hashimotonis sp. nov. isolated from the International Space Station
title_short Comparative genomic analysis of Cohnella hashimotonis sp. nov. isolated from the International Space Station
title_sort comparative genomic analysis of cohnella hashimotonis sp. nov. isolated from the international space station
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10308117/
https://www.ncbi.nlm.nih.gov/pubmed/37396358
http://dx.doi.org/10.3389/fmicb.2023.1166013
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