Cargando…
Whole-Genome Resequencing and Pan-Transcriptome Reconstruction Highlight the Impact of Genomic Structural Variation on Secondary Metabolite Gene Clusters in the Grapevine Esca Pathogen Phaeoacremonium minimum
The Ascomycete fungus Phaeoacremonium minimum is one of the primary causal agents of Esca, a widespread and damaging grapevine trunk disease. Variation in virulence among Pm. minimum isolates has been reported, but the underlying genetic basis of the phenotypic variability remains unknown. The goal...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2018
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6099105/ https://www.ncbi.nlm.nih.gov/pubmed/30150972 http://dx.doi.org/10.3389/fmicb.2018.01784 |
_version_ | 1783348595577061376 |
---|---|
author | Massonnet, Mélanie Morales-Cruz, Abraham Minio, Andrea Figueroa-Balderas, Rosa Lawrence, Daniel P. Travadon, Renaud Rolshausen, Philippe E. Baumgartner, Kendra Cantu, Dario |
author_facet | Massonnet, Mélanie Morales-Cruz, Abraham Minio, Andrea Figueroa-Balderas, Rosa Lawrence, Daniel P. Travadon, Renaud Rolshausen, Philippe E. Baumgartner, Kendra Cantu, Dario |
author_sort | Massonnet, Mélanie |
collection | PubMed |
description | The Ascomycete fungus Phaeoacremonium minimum is one of the primary causal agents of Esca, a widespread and damaging grapevine trunk disease. Variation in virulence among Pm. minimum isolates has been reported, but the underlying genetic basis of the phenotypic variability remains unknown. The goal of this study was to characterize intraspecific genetic diversity and explore its potential impact on virulence functions associated with secondary metabolism, cellular transport, and cell wall decomposition. We generated a chromosome-scale genome assembly, using single molecule real-time sequencing, and resequenced the genomes and transcriptomes of multiple isolates to identify sequence and structural polymorphisms. Numerous insertion and deletion events were found for a total of about 1 Mbp in each isolate. Structural variation in this extremely gene dense genome frequently caused presence/absence polymorphisms of multiple adjacent genes, mostly belonging to biosynthetic clusters associated with secondary metabolism. Because of the observed intraspecific diversity in gene content due to structural variation we concluded that a transcriptome reference developed from a single isolate is insufficient to represent the virulence factor repertoire of the species. We therefore compiled a pan-transcriptome reference of Pm. minimum comprising a non-redundant set of 15,245 protein-coding sequences. Using naturally infected field samples expressing Esca symptoms, we demonstrated that mapping of meta-transcriptomics data on a multi-species reference that included the Pm. minimum pan-transcriptome allows the profiling of an expanded set of virulence factors, including variable genes associated with secondary metabolism and cellular transport. |
format | Online Article Text |
id | pubmed-6099105 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-60991052018-08-27 Whole-Genome Resequencing and Pan-Transcriptome Reconstruction Highlight the Impact of Genomic Structural Variation on Secondary Metabolite Gene Clusters in the Grapevine Esca Pathogen Phaeoacremonium minimum Massonnet, Mélanie Morales-Cruz, Abraham Minio, Andrea Figueroa-Balderas, Rosa Lawrence, Daniel P. Travadon, Renaud Rolshausen, Philippe E. Baumgartner, Kendra Cantu, Dario Front Microbiol Microbiology The Ascomycete fungus Phaeoacremonium minimum is one of the primary causal agents of Esca, a widespread and damaging grapevine trunk disease. Variation in virulence among Pm. minimum isolates has been reported, but the underlying genetic basis of the phenotypic variability remains unknown. The goal of this study was to characterize intraspecific genetic diversity and explore its potential impact on virulence functions associated with secondary metabolism, cellular transport, and cell wall decomposition. We generated a chromosome-scale genome assembly, using single molecule real-time sequencing, and resequenced the genomes and transcriptomes of multiple isolates to identify sequence and structural polymorphisms. Numerous insertion and deletion events were found for a total of about 1 Mbp in each isolate. Structural variation in this extremely gene dense genome frequently caused presence/absence polymorphisms of multiple adjacent genes, mostly belonging to biosynthetic clusters associated with secondary metabolism. Because of the observed intraspecific diversity in gene content due to structural variation we concluded that a transcriptome reference developed from a single isolate is insufficient to represent the virulence factor repertoire of the species. We therefore compiled a pan-transcriptome reference of Pm. minimum comprising a non-redundant set of 15,245 protein-coding sequences. Using naturally infected field samples expressing Esca symptoms, we demonstrated that mapping of meta-transcriptomics data on a multi-species reference that included the Pm. minimum pan-transcriptome allows the profiling of an expanded set of virulence factors, including variable genes associated with secondary metabolism and cellular transport. Frontiers Media S.A. 2018-08-13 /pmc/articles/PMC6099105/ /pubmed/30150972 http://dx.doi.org/10.3389/fmicb.2018.01784 Text en Copyright © 2018 Massonnet, Morales-Cruz, Minio, Figueroa-Balderas, Lawrence, Travadon, Rolshausen, Baumgartner and Cantu. 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 Massonnet, Mélanie Morales-Cruz, Abraham Minio, Andrea Figueroa-Balderas, Rosa Lawrence, Daniel P. Travadon, Renaud Rolshausen, Philippe E. Baumgartner, Kendra Cantu, Dario Whole-Genome Resequencing and Pan-Transcriptome Reconstruction Highlight the Impact of Genomic Structural Variation on Secondary Metabolite Gene Clusters in the Grapevine Esca Pathogen Phaeoacremonium minimum |
title | Whole-Genome Resequencing and Pan-Transcriptome Reconstruction Highlight the Impact of Genomic Structural Variation on Secondary Metabolite Gene Clusters in the Grapevine Esca Pathogen Phaeoacremonium minimum |
title_full | Whole-Genome Resequencing and Pan-Transcriptome Reconstruction Highlight the Impact of Genomic Structural Variation on Secondary Metabolite Gene Clusters in the Grapevine Esca Pathogen Phaeoacremonium minimum |
title_fullStr | Whole-Genome Resequencing and Pan-Transcriptome Reconstruction Highlight the Impact of Genomic Structural Variation on Secondary Metabolite Gene Clusters in the Grapevine Esca Pathogen Phaeoacremonium minimum |
title_full_unstemmed | Whole-Genome Resequencing and Pan-Transcriptome Reconstruction Highlight the Impact of Genomic Structural Variation on Secondary Metabolite Gene Clusters in the Grapevine Esca Pathogen Phaeoacremonium minimum |
title_short | Whole-Genome Resequencing and Pan-Transcriptome Reconstruction Highlight the Impact of Genomic Structural Variation on Secondary Metabolite Gene Clusters in the Grapevine Esca Pathogen Phaeoacremonium minimum |
title_sort | whole-genome resequencing and pan-transcriptome reconstruction highlight the impact of genomic structural variation on secondary metabolite gene clusters in the grapevine esca pathogen phaeoacremonium minimum |
topic | Microbiology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6099105/ https://www.ncbi.nlm.nih.gov/pubmed/30150972 http://dx.doi.org/10.3389/fmicb.2018.01784 |
work_keys_str_mv | AT massonnetmelanie wholegenomeresequencingandpantranscriptomereconstructionhighlighttheimpactofgenomicstructuralvariationonsecondarymetabolitegeneclustersinthegrapevineescapathogenphaeoacremoniumminimum AT moralescruzabraham wholegenomeresequencingandpantranscriptomereconstructionhighlighttheimpactofgenomicstructuralvariationonsecondarymetabolitegeneclustersinthegrapevineescapathogenphaeoacremoniumminimum AT minioandrea wholegenomeresequencingandpantranscriptomereconstructionhighlighttheimpactofgenomicstructuralvariationonsecondarymetabolitegeneclustersinthegrapevineescapathogenphaeoacremoniumminimum AT figueroabalderasrosa wholegenomeresequencingandpantranscriptomereconstructionhighlighttheimpactofgenomicstructuralvariationonsecondarymetabolitegeneclustersinthegrapevineescapathogenphaeoacremoniumminimum AT lawrencedanielp wholegenomeresequencingandpantranscriptomereconstructionhighlighttheimpactofgenomicstructuralvariationonsecondarymetabolitegeneclustersinthegrapevineescapathogenphaeoacremoniumminimum AT travadonrenaud wholegenomeresequencingandpantranscriptomereconstructionhighlighttheimpactofgenomicstructuralvariationonsecondarymetabolitegeneclustersinthegrapevineescapathogenphaeoacremoniumminimum AT rolshausenphilippee wholegenomeresequencingandpantranscriptomereconstructionhighlighttheimpactofgenomicstructuralvariationonsecondarymetabolitegeneclustersinthegrapevineescapathogenphaeoacremoniumminimum AT baumgartnerkendra wholegenomeresequencingandpantranscriptomereconstructionhighlighttheimpactofgenomicstructuralvariationonsecondarymetabolitegeneclustersinthegrapevineescapathogenphaeoacremoniumminimum AT cantudario wholegenomeresequencingandpantranscriptomereconstructionhighlighttheimpactofgenomicstructuralvariationonsecondarymetabolitegeneclustersinthegrapevineescapathogenphaeoacremoniumminimum |