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Complete Genome Sequence of Sporisorium scitamineum and Biotrophic Interaction Transcriptome with Sugarcane
Sporisorium scitamineum is a biotrophic fungus responsible for the sugarcane smut, a worldwide spread disease. This study provides the complete sequence of individual chromosomes of S. scitamineum from telomere to telomere achieved by a combination of PacBio long reads and Illumina short reads seque...
Autores principales: | , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2015
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4466345/ https://www.ncbi.nlm.nih.gov/pubmed/26065709 http://dx.doi.org/10.1371/journal.pone.0129318 |
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author | Taniguti, Lucas M. Schaker, Patricia D. C. Benevenuto, Juliana Peters, Leila P. Carvalho, Giselle Palhares, Alessandra Quecine, Maria C. Nunes, Filipe R. S. Kmit, Maria C. P. Wai, Alvan Hausner, Georg Aitken, Karen S. Berkman, Paul J. Fraser, James A. Moolhuijzen, Paula M. Coutinho, Luiz L. Creste, Silvana Vieira, Maria L. C. Kitajima, João P. Monteiro-Vitorello, Claudia B. |
author_facet | Taniguti, Lucas M. Schaker, Patricia D. C. Benevenuto, Juliana Peters, Leila P. Carvalho, Giselle Palhares, Alessandra Quecine, Maria C. Nunes, Filipe R. S. Kmit, Maria C. P. Wai, Alvan Hausner, Georg Aitken, Karen S. Berkman, Paul J. Fraser, James A. Moolhuijzen, Paula M. Coutinho, Luiz L. Creste, Silvana Vieira, Maria L. C. Kitajima, João P. Monteiro-Vitorello, Claudia B. |
author_sort | Taniguti, Lucas M. |
collection | PubMed |
description | Sporisorium scitamineum is a biotrophic fungus responsible for the sugarcane smut, a worldwide spread disease. This study provides the complete sequence of individual chromosomes of S. scitamineum from telomere to telomere achieved by a combination of PacBio long reads and Illumina short reads sequence data, as well as a draft sequence of a second fungal strain. Comparative analysis to previous available sequences of another strain detected few polymorphisms among the three genomes. The novel complete sequence described herein allowed us to identify and annotate extended subtelomeric regions, repetitive elements and the mitochondrial DNA sequence. The genome comprises 19,979,571 bases, 6,677 genes encoding proteins, 111 tRNAs and 3 assembled copies of rDNA, out of our estimated number of copies as 130. Chromosomal reorganizations were detected when comparing to sequences of S. reilianum, the closest smut relative, potentially influenced by repeats of transposable elements. Repetitive elements may have also directed the linkage of the two mating-type loci. The fungal transcriptome profiling from in vitro and from interaction with sugarcane at two time points (early infection and whip emergence) revealed that 13.5% of the genes were differentially expressed in planta and particular to each developmental stage. Among them are plant cell wall degrading enzymes, proteases, lipases, chitin modification and lignin degradation enzymes, sugar transporters and transcriptional factors. The fungus also modulates transcription of genes related to surviving against reactive oxygen species and other toxic metabolites produced by the plant. Previously described effectors in smut/plant interactions were detected but some new candidates are proposed. Ten genomic islands harboring some of the candidate genes unique to S. scitamineum were expressed only in planta. RNAseq data was also used to reassure gene predictions. |
format | Online Article Text |
id | pubmed-4466345 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-44663452015-06-22 Complete Genome Sequence of Sporisorium scitamineum and Biotrophic Interaction Transcriptome with Sugarcane Taniguti, Lucas M. Schaker, Patricia D. C. Benevenuto, Juliana Peters, Leila P. Carvalho, Giselle Palhares, Alessandra Quecine, Maria C. Nunes, Filipe R. S. Kmit, Maria C. P. Wai, Alvan Hausner, Georg Aitken, Karen S. Berkman, Paul J. Fraser, James A. Moolhuijzen, Paula M. Coutinho, Luiz L. Creste, Silvana Vieira, Maria L. C. Kitajima, João P. Monteiro-Vitorello, Claudia B. PLoS One Research Article Sporisorium scitamineum is a biotrophic fungus responsible for the sugarcane smut, a worldwide spread disease. This study provides the complete sequence of individual chromosomes of S. scitamineum from telomere to telomere achieved by a combination of PacBio long reads and Illumina short reads sequence data, as well as a draft sequence of a second fungal strain. Comparative analysis to previous available sequences of another strain detected few polymorphisms among the three genomes. The novel complete sequence described herein allowed us to identify and annotate extended subtelomeric regions, repetitive elements and the mitochondrial DNA sequence. The genome comprises 19,979,571 bases, 6,677 genes encoding proteins, 111 tRNAs and 3 assembled copies of rDNA, out of our estimated number of copies as 130. Chromosomal reorganizations were detected when comparing to sequences of S. reilianum, the closest smut relative, potentially influenced by repeats of transposable elements. Repetitive elements may have also directed the linkage of the two mating-type loci. The fungal transcriptome profiling from in vitro and from interaction with sugarcane at two time points (early infection and whip emergence) revealed that 13.5% of the genes were differentially expressed in planta and particular to each developmental stage. Among them are plant cell wall degrading enzymes, proteases, lipases, chitin modification and lignin degradation enzymes, sugar transporters and transcriptional factors. The fungus also modulates transcription of genes related to surviving against reactive oxygen species and other toxic metabolites produced by the plant. Previously described effectors in smut/plant interactions were detected but some new candidates are proposed. Ten genomic islands harboring some of the candidate genes unique to S. scitamineum were expressed only in planta. RNAseq data was also used to reassure gene predictions. Public Library of Science 2015-06-12 /pmc/articles/PMC4466345/ /pubmed/26065709 http://dx.doi.org/10.1371/journal.pone.0129318 Text en © 2015 Taniguti et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited. |
spellingShingle | Research Article Taniguti, Lucas M. Schaker, Patricia D. C. Benevenuto, Juliana Peters, Leila P. Carvalho, Giselle Palhares, Alessandra Quecine, Maria C. Nunes, Filipe R. S. Kmit, Maria C. P. Wai, Alvan Hausner, Georg Aitken, Karen S. Berkman, Paul J. Fraser, James A. Moolhuijzen, Paula M. Coutinho, Luiz L. Creste, Silvana Vieira, Maria L. C. Kitajima, João P. Monteiro-Vitorello, Claudia B. Complete Genome Sequence of Sporisorium scitamineum and Biotrophic Interaction Transcriptome with Sugarcane |
title | Complete Genome Sequence of Sporisorium scitamineum and Biotrophic Interaction Transcriptome with Sugarcane |
title_full | Complete Genome Sequence of Sporisorium scitamineum and Biotrophic Interaction Transcriptome with Sugarcane |
title_fullStr | Complete Genome Sequence of Sporisorium scitamineum and Biotrophic Interaction Transcriptome with Sugarcane |
title_full_unstemmed | Complete Genome Sequence of Sporisorium scitamineum and Biotrophic Interaction Transcriptome with Sugarcane |
title_short | Complete Genome Sequence of Sporisorium scitamineum and Biotrophic Interaction Transcriptome with Sugarcane |
title_sort | complete genome sequence of sporisorium scitamineum and biotrophic interaction transcriptome with sugarcane |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4466345/ https://www.ncbi.nlm.nih.gov/pubmed/26065709 http://dx.doi.org/10.1371/journal.pone.0129318 |
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