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Metagenomics of Neotropical Single-Stranded DNA Viruses in Tomato Cultivars with and without the Ty-1 Gene

A complex of begomoviruses (Geminiviridae) can cause severe tomato yield losses in the neotropics. Here, next-generation sequencing was employed for large-scale assessment of single-stranded (ss)DNA virus diversity in tomatoes either harboring or lacking the large-spectrum begomovirus tolerance Ty-1...

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Autores principales: de Nazaré Almeida dos Reis, Luciane, Fonseca, Maria Esther de Noronha, Ribeiro, Simone Graça, Naito, Fernanda Yuri Borges, Boiteux, Leonardo Silva, Pereira-Carvalho, Rita de Cássia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7472167/
https://www.ncbi.nlm.nih.gov/pubmed/32731641
http://dx.doi.org/10.3390/v12080819
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author de Nazaré Almeida dos Reis, Luciane
Fonseca, Maria Esther de Noronha
Ribeiro, Simone Graça
Naito, Fernanda Yuri Borges
Boiteux, Leonardo Silva
Pereira-Carvalho, Rita de Cássia
author_facet de Nazaré Almeida dos Reis, Luciane
Fonseca, Maria Esther de Noronha
Ribeiro, Simone Graça
Naito, Fernanda Yuri Borges
Boiteux, Leonardo Silva
Pereira-Carvalho, Rita de Cássia
author_sort de Nazaré Almeida dos Reis, Luciane
collection PubMed
description A complex of begomoviruses (Geminiviridae) can cause severe tomato yield losses in the neotropics. Here, next-generation sequencing was employed for large-scale assessment of single-stranded (ss)DNA virus diversity in tomatoes either harboring or lacking the large-spectrum begomovirus tolerance Ty-1 gene. Individual leaf samples exhibiting begomovirus-like symptoms (n = 107) were field-collected, circular DNA-enriched, subdivided into pools (with and without Ty-1), and Illumina-sequenced. Virus-specific PCR and Sanger dideoxy sequencing validations confirmed 15 distinct ssDNA virus/subviral agents (occurring mainly in mixed infections), which highlight the potential drawbacks of employing virus-specific resistance in tomato breeding. More viruses (14 versus 6 species) were observed in tomatoes without the Ty-1 gene. A gemycircularvirus (Genomoviridae), a new alpha-satellite, and two novel Begomovirus species were identified exclusively in samples without the Ty-1 gene. A novel begomovirus was found only in the Ty-1 pool, being the only species associated with severe symptoms in Ty-1 plants in our survey. Our work is the first step towards the elucidation of the potential begomovirus adaptation to Ty-1 and its specific filtering effects on a subset of ssDNA viral/subviral agents.
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spelling pubmed-74721672020-09-04 Metagenomics of Neotropical Single-Stranded DNA Viruses in Tomato Cultivars with and without the Ty-1 Gene de Nazaré Almeida dos Reis, Luciane Fonseca, Maria Esther de Noronha Ribeiro, Simone Graça Naito, Fernanda Yuri Borges Boiteux, Leonardo Silva Pereira-Carvalho, Rita de Cássia Viruses Article A complex of begomoviruses (Geminiviridae) can cause severe tomato yield losses in the neotropics. Here, next-generation sequencing was employed for large-scale assessment of single-stranded (ss)DNA virus diversity in tomatoes either harboring or lacking the large-spectrum begomovirus tolerance Ty-1 gene. Individual leaf samples exhibiting begomovirus-like symptoms (n = 107) were field-collected, circular DNA-enriched, subdivided into pools (with and without Ty-1), and Illumina-sequenced. Virus-specific PCR and Sanger dideoxy sequencing validations confirmed 15 distinct ssDNA virus/subviral agents (occurring mainly in mixed infections), which highlight the potential drawbacks of employing virus-specific resistance in tomato breeding. More viruses (14 versus 6 species) were observed in tomatoes without the Ty-1 gene. A gemycircularvirus (Genomoviridae), a new alpha-satellite, and two novel Begomovirus species were identified exclusively in samples without the Ty-1 gene. A novel begomovirus was found only in the Ty-1 pool, being the only species associated with severe symptoms in Ty-1 plants in our survey. Our work is the first step towards the elucidation of the potential begomovirus adaptation to Ty-1 and its specific filtering effects on a subset of ssDNA viral/subviral agents. MDPI 2020-07-28 /pmc/articles/PMC7472167/ /pubmed/32731641 http://dx.doi.org/10.3390/v12080819 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
de Nazaré Almeida dos Reis, Luciane
Fonseca, Maria Esther de Noronha
Ribeiro, Simone Graça
Naito, Fernanda Yuri Borges
Boiteux, Leonardo Silva
Pereira-Carvalho, Rita de Cássia
Metagenomics of Neotropical Single-Stranded DNA Viruses in Tomato Cultivars with and without the Ty-1 Gene
title Metagenomics of Neotropical Single-Stranded DNA Viruses in Tomato Cultivars with and without the Ty-1 Gene
title_full Metagenomics of Neotropical Single-Stranded DNA Viruses in Tomato Cultivars with and without the Ty-1 Gene
title_fullStr Metagenomics of Neotropical Single-Stranded DNA Viruses in Tomato Cultivars with and without the Ty-1 Gene
title_full_unstemmed Metagenomics of Neotropical Single-Stranded DNA Viruses in Tomato Cultivars with and without the Ty-1 Gene
title_short Metagenomics of Neotropical Single-Stranded DNA Viruses in Tomato Cultivars with and without the Ty-1 Gene
title_sort metagenomics of neotropical single-stranded dna viruses in tomato cultivars with and without the ty-1 gene
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7472167/
https://www.ncbi.nlm.nih.gov/pubmed/32731641
http://dx.doi.org/10.3390/v12080819
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