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Genomic Characterization of Parengyodontium torokii sp. nov., a Biofilm-Forming Fungus Isolated from Mars 2020 Assembly Facility

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 six-loci gene tree (ITS, LSU, SSU, RPB1 and RPB2, and TEF1) using multi-locus sequence typing (MLST) analyses...

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Autores principales: Parker, Ceth W., Teixeira, Marcus de Melo, Singh, Nitin K., Raja, Huzefa A., Cank, Kristof B., Spigolon, Giada, Oberlies, Nicholas H., Barker, Bridget M., Stajich, Jason E., Mason, Christopher E., Venkateswaran, Kasthuri
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8778116/
https://www.ncbi.nlm.nih.gov/pubmed/35050006
http://dx.doi.org/10.3390/jof8010066
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author Parker, Ceth W.
Teixeira, Marcus de Melo
Singh, Nitin K.
Raja, Huzefa A.
Cank, Kristof B.
Spigolon, Giada
Oberlies, Nicholas H.
Barker, Bridget M.
Stajich, Jason E.
Mason, Christopher E.
Venkateswaran, Kasthuri
author_facet Parker, Ceth W.
Teixeira, Marcus de Melo
Singh, Nitin K.
Raja, Huzefa A.
Cank, Kristof B.
Spigolon, Giada
Oberlies, Nicholas H.
Barker, Bridget M.
Stajich, Jason E.
Mason, Christopher E.
Venkateswaran, Kasthuri
author_sort Parker, Ceth W.
collection PubMed
description 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 six-loci gene tree (ITS, LSU, SSU, RPB1 and RPB2, and TEF1) using multi-locus sequence typing (MLST) analyses of the strain FJII-L10-SW-P1 supported a close relationship to other known Parengyodontium album subclade 3 isolates while being phylogenetically distinct from subclade 1 strains. The zig-zag rachides morphology of the conidiogenous cells and spindle-shaped conidia were the distinct morphological characteristics of the P. album subclade 3 strains. The MLST data and morphological analysis supported the conclusion that the P. album subclade 3 strains could be classified as a new species of the genus Parengyodontium and placed in the family Cordycipitaceae. The name Parengyodontium torokii sp. nov. is proposed to accommodate the strain, with FJII-L10-SW-P1 as the holotype. The genome of the FJII-L10-SW-P1 strain was sequenced, annotated, and the secondary metabolite clusters were identified. Genes predicted to be responsible for biofilm formation and adhesion to surfaces were identified. Homology-based assignment of gene ontologies to the predicted proteome of P. torokii revealed the presence of gene clusters responsible for synthesizing several metabolic compounds, including a cytochalasin that was also verified using traditional metabolomic analysis.
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spelling pubmed-87781162022-01-22 Genomic Characterization of Parengyodontium torokii sp. nov., a Biofilm-Forming Fungus Isolated from Mars 2020 Assembly Facility Parker, Ceth W. Teixeira, Marcus de Melo Singh, Nitin K. Raja, Huzefa A. Cank, Kristof B. Spigolon, Giada Oberlies, Nicholas H. Barker, Bridget M. Stajich, Jason E. Mason, Christopher E. Venkateswaran, Kasthuri J Fungi (Basel) Article 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 six-loci gene tree (ITS, LSU, SSU, RPB1 and RPB2, and TEF1) using multi-locus sequence typing (MLST) analyses of the strain FJII-L10-SW-P1 supported a close relationship to other known Parengyodontium album subclade 3 isolates while being phylogenetically distinct from subclade 1 strains. The zig-zag rachides morphology of the conidiogenous cells and spindle-shaped conidia were the distinct morphological characteristics of the P. album subclade 3 strains. The MLST data and morphological analysis supported the conclusion that the P. album subclade 3 strains could be classified as a new species of the genus Parengyodontium and placed in the family Cordycipitaceae. The name Parengyodontium torokii sp. nov. is proposed to accommodate the strain, with FJII-L10-SW-P1 as the holotype. The genome of the FJII-L10-SW-P1 strain was sequenced, annotated, and the secondary metabolite clusters were identified. Genes predicted to be responsible for biofilm formation and adhesion to surfaces were identified. Homology-based assignment of gene ontologies to the predicted proteome of P. torokii revealed the presence of gene clusters responsible for synthesizing several metabolic compounds, including a cytochalasin that was also verified using traditional metabolomic analysis. MDPI 2022-01-09 /pmc/articles/PMC8778116/ /pubmed/35050006 http://dx.doi.org/10.3390/jof8010066 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Parker, Ceth W.
Teixeira, Marcus de Melo
Singh, Nitin K.
Raja, Huzefa A.
Cank, Kristof B.
Spigolon, Giada
Oberlies, Nicholas H.
Barker, Bridget M.
Stajich, Jason E.
Mason, Christopher E.
Venkateswaran, Kasthuri
Genomic Characterization of Parengyodontium torokii sp. nov., a Biofilm-Forming Fungus Isolated from Mars 2020 Assembly Facility
title Genomic Characterization of Parengyodontium torokii sp. nov., a Biofilm-Forming Fungus Isolated from Mars 2020 Assembly Facility
title_full Genomic Characterization of Parengyodontium torokii sp. nov., a Biofilm-Forming Fungus Isolated from Mars 2020 Assembly Facility
title_fullStr Genomic Characterization of Parengyodontium torokii sp. nov., a Biofilm-Forming Fungus Isolated from Mars 2020 Assembly Facility
title_full_unstemmed Genomic Characterization of Parengyodontium torokii sp. nov., a Biofilm-Forming Fungus Isolated from Mars 2020 Assembly Facility
title_short Genomic Characterization of Parengyodontium torokii sp. nov., a Biofilm-Forming Fungus Isolated from Mars 2020 Assembly Facility
title_sort genomic characterization of parengyodontium torokii sp. nov., a biofilm-forming fungus isolated from mars 2020 assembly facility
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8778116/
https://www.ncbi.nlm.nih.gov/pubmed/35050006
http://dx.doi.org/10.3390/jof8010066
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