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Diversity of Mobile Genetic Elements in the Mitogenomes of Closely Related Fusarium culmorum and F. graminearum sensu stricto Strains and Its Implication for Diagnostic Purposes

Much of the mitogenome variation observed in fungal lineages seems driven by mobile genetic elements (MGEs), which have invaded their genomes throughout evolution. The variation in the distribution and nucleotide diversity of these elements appears to be the main distinction between different fungal...

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Autores principales: Kulik, Tomasz, Brankovics, Balazs, van Diepeningen, Anne D., Bilska, Katarzyna, Żelechowski, Maciej, Myszczyński, Kamil, Molcan, Tomasz, Stakheev, Alexander, Stenglein, Sebastian, Beyer, Marco, Pasquali, Matias, Sawicki, Jakub, Wyrȩbek, Joanna, Baturo-Cieśniewska, Anna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7263005/
https://www.ncbi.nlm.nih.gov/pubmed/32528440
http://dx.doi.org/10.3389/fmicb.2020.01002
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author Kulik, Tomasz
Brankovics, Balazs
van Diepeningen, Anne D.
Bilska, Katarzyna
Żelechowski, Maciej
Myszczyński, Kamil
Molcan, Tomasz
Stakheev, Alexander
Stenglein, Sebastian
Beyer, Marco
Pasquali, Matias
Sawicki, Jakub
Wyrȩbek, Joanna
Baturo-Cieśniewska, Anna
author_facet Kulik, Tomasz
Brankovics, Balazs
van Diepeningen, Anne D.
Bilska, Katarzyna
Żelechowski, Maciej
Myszczyński, Kamil
Molcan, Tomasz
Stakheev, Alexander
Stenglein, Sebastian
Beyer, Marco
Pasquali, Matias
Sawicki, Jakub
Wyrȩbek, Joanna
Baturo-Cieśniewska, Anna
author_sort Kulik, Tomasz
collection PubMed
description Much of the mitogenome variation observed in fungal lineages seems driven by mobile genetic elements (MGEs), which have invaded their genomes throughout evolution. The variation in the distribution and nucleotide diversity of these elements appears to be the main distinction between different fungal taxa, making them promising candidates for diagnostic purposes. Fungi of the genus Fusarium display a high variation in MGE content, from MGE-poor (Fusarium oxysporum and Fusarium fujikuroi species complex) to MGE-rich mitogenomes found in the important cereal pathogens F. culmorum and F. graminearum sensu stricto. In this study, we investigated the MGE variation in these latter two species by mitogenome analysis of geographically diverse strains. In addition, a smaller set of F. cerealis and F. pseudograminearum strains was included for comparison. Forty-seven introns harboring from 0 to 3 endonucleases (HEGs) were identified in the standard set of mitochondrial protein-coding genes. Most of them belonged to the group I intron family and harbored either LAGLIDADG or GIY-YIG HEGs. Among a total of 53 HEGs, 27 were shared by all fungal strains. Most of the optional HEGs were irregularly distributed among fungal strains/species indicating ancestral mosaicism in MGEs. However, among optional MGEs, one exhibited species-specific conservation in F. culmorum. While in F. graminearum s.s. MGE patterns in cox3 and in the intergenic spacer between cox2 and nad4L may facilitate the identification of this species. Thus, our results demonstrate distinctive traits of mitogenomes for diagnostic purposes of Fusaria.
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spelling pubmed-72630052020-06-10 Diversity of Mobile Genetic Elements in the Mitogenomes of Closely Related Fusarium culmorum and F. graminearum sensu stricto Strains and Its Implication for Diagnostic Purposes Kulik, Tomasz Brankovics, Balazs van Diepeningen, Anne D. Bilska, Katarzyna Żelechowski, Maciej Myszczyński, Kamil Molcan, Tomasz Stakheev, Alexander Stenglein, Sebastian Beyer, Marco Pasquali, Matias Sawicki, Jakub Wyrȩbek, Joanna Baturo-Cieśniewska, Anna Front Microbiol Microbiology Much of the mitogenome variation observed in fungal lineages seems driven by mobile genetic elements (MGEs), which have invaded their genomes throughout evolution. The variation in the distribution and nucleotide diversity of these elements appears to be the main distinction between different fungal taxa, making them promising candidates for diagnostic purposes. Fungi of the genus Fusarium display a high variation in MGE content, from MGE-poor (Fusarium oxysporum and Fusarium fujikuroi species complex) to MGE-rich mitogenomes found in the important cereal pathogens F. culmorum and F. graminearum sensu stricto. In this study, we investigated the MGE variation in these latter two species by mitogenome analysis of geographically diverse strains. In addition, a smaller set of F. cerealis and F. pseudograminearum strains was included for comparison. Forty-seven introns harboring from 0 to 3 endonucleases (HEGs) were identified in the standard set of mitochondrial protein-coding genes. Most of them belonged to the group I intron family and harbored either LAGLIDADG or GIY-YIG HEGs. Among a total of 53 HEGs, 27 were shared by all fungal strains. Most of the optional HEGs were irregularly distributed among fungal strains/species indicating ancestral mosaicism in MGEs. However, among optional MGEs, one exhibited species-specific conservation in F. culmorum. While in F. graminearum s.s. MGE patterns in cox3 and in the intergenic spacer between cox2 and nad4L may facilitate the identification of this species. Thus, our results demonstrate distinctive traits of mitogenomes for diagnostic purposes of Fusaria. Frontiers Media S.A. 2020-05-25 /pmc/articles/PMC7263005/ /pubmed/32528440 http://dx.doi.org/10.3389/fmicb.2020.01002 Text en Copyright © 2020 Kulik, Brankovics, van Diepeningen, Bilska, Żelechowski, Myszczyński, Molcan, Stakheev, Stenglein, Beyer, Pasquali, Sawicki, Wyrȩbek and Baturo-Cieśniewska. http://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
Kulik, Tomasz
Brankovics, Balazs
van Diepeningen, Anne D.
Bilska, Katarzyna
Żelechowski, Maciej
Myszczyński, Kamil
Molcan, Tomasz
Stakheev, Alexander
Stenglein, Sebastian
Beyer, Marco
Pasquali, Matias
Sawicki, Jakub
Wyrȩbek, Joanna
Baturo-Cieśniewska, Anna
Diversity of Mobile Genetic Elements in the Mitogenomes of Closely Related Fusarium culmorum and F. graminearum sensu stricto Strains and Its Implication for Diagnostic Purposes
title Diversity of Mobile Genetic Elements in the Mitogenomes of Closely Related Fusarium culmorum and F. graminearum sensu stricto Strains and Its Implication for Diagnostic Purposes
title_full Diversity of Mobile Genetic Elements in the Mitogenomes of Closely Related Fusarium culmorum and F. graminearum sensu stricto Strains and Its Implication for Diagnostic Purposes
title_fullStr Diversity of Mobile Genetic Elements in the Mitogenomes of Closely Related Fusarium culmorum and F. graminearum sensu stricto Strains and Its Implication for Diagnostic Purposes
title_full_unstemmed Diversity of Mobile Genetic Elements in the Mitogenomes of Closely Related Fusarium culmorum and F. graminearum sensu stricto Strains and Its Implication for Diagnostic Purposes
title_short Diversity of Mobile Genetic Elements in the Mitogenomes of Closely Related Fusarium culmorum and F. graminearum sensu stricto Strains and Its Implication for Diagnostic Purposes
title_sort diversity of mobile genetic elements in the mitogenomes of closely related fusarium culmorum and f. graminearum sensu stricto strains and its implication for diagnostic purposes
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7263005/
https://www.ncbi.nlm.nih.gov/pubmed/32528440
http://dx.doi.org/10.3389/fmicb.2020.01002
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