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Unraveling the Genome of a High Yielding Colombian Sugarcane Hybrid

Recent developments in High Throughput Sequencing (HTS) technologies and bioinformatics, including improved read lengths and genome assemblers allow the reconstruction of complex genomes with unprecedented quality and contiguity. Sugarcane has one of the most complicated genomes among grassess with...

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Autores principales: Trujillo-Montenegro, Jhon Henry, Rodríguez Cubillos, María Juliana, Loaiza, Cristian Darío, Quintero, Manuel, Espitia-Navarro, Héctor Fabio, Salazar Villareal, Fredy Antonio, Viveros Valens, Carlos Arturo, González Barrios, Andrés Fernando, De Vega, José, Duitama, Jorge, Riascos, John J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8414525/
https://www.ncbi.nlm.nih.gov/pubmed/34484261
http://dx.doi.org/10.3389/fpls.2021.694859
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author Trujillo-Montenegro, Jhon Henry
Rodríguez Cubillos, María Juliana
Loaiza, Cristian Darío
Quintero, Manuel
Espitia-Navarro, Héctor Fabio
Salazar Villareal, Fredy Antonio
Viveros Valens, Carlos Arturo
González Barrios, Andrés Fernando
De Vega, José
Duitama, Jorge
Riascos, John J.
author_facet Trujillo-Montenegro, Jhon Henry
Rodríguez Cubillos, María Juliana
Loaiza, Cristian Darío
Quintero, Manuel
Espitia-Navarro, Héctor Fabio
Salazar Villareal, Fredy Antonio
Viveros Valens, Carlos Arturo
González Barrios, Andrés Fernando
De Vega, José
Duitama, Jorge
Riascos, John J.
author_sort Trujillo-Montenegro, Jhon Henry
collection PubMed
description Recent developments in High Throughput Sequencing (HTS) technologies and bioinformatics, including improved read lengths and genome assemblers allow the reconstruction of complex genomes with unprecedented quality and contiguity. Sugarcane has one of the most complicated genomes among grassess with a haploid length of 1Gbp and a ploidies between 8 and 12. In this work, we present a genome assembly of the Colombian sugarcane hybrid CC 01-1940. Three types of sequencing technologies were combined for this assembly: PacBio long reads, Illumina paired short reads, and Hi-C reads. We achieved a median contig length of 34.94 Mbp and a total genome assembly of 903.2 Mbp. We annotated a total of 63,724 protein coding genes and performed a reconstruction and comparative analysis of the sucrose metabolism pathway. Nucleotide evolution measurements between orthologs with close species suggest that divergence between Saccharum officinarum and Saccharum spontaneum occurred <2 million years ago. Synteny analysis between CC 01-1940 and the S. spontaneum genome confirms the presence of translocation events between the species and a random contribution throughout the entire genome in current sugarcane hybrids. Analysis of RNA-Seq data from leaf and root tissue of contrasting sugarcane genotypes subjected to water stress treatments revealed 17,490 differentially expressed genes, from which 3,633 correspond to genes expressed exclusively in tolerant genotypes. We expect the resources presented here to serve as a source of information to improve the selection processes of new varieties of the breeding programs of sugarcane.
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spelling pubmed-84145252021-09-04 Unraveling the Genome of a High Yielding Colombian Sugarcane Hybrid Trujillo-Montenegro, Jhon Henry Rodríguez Cubillos, María Juliana Loaiza, Cristian Darío Quintero, Manuel Espitia-Navarro, Héctor Fabio Salazar Villareal, Fredy Antonio Viveros Valens, Carlos Arturo González Barrios, Andrés Fernando De Vega, José Duitama, Jorge Riascos, John J. Front Plant Sci Plant Science Recent developments in High Throughput Sequencing (HTS) technologies and bioinformatics, including improved read lengths and genome assemblers allow the reconstruction of complex genomes with unprecedented quality and contiguity. Sugarcane has one of the most complicated genomes among grassess with a haploid length of 1Gbp and a ploidies between 8 and 12. In this work, we present a genome assembly of the Colombian sugarcane hybrid CC 01-1940. Three types of sequencing technologies were combined for this assembly: PacBio long reads, Illumina paired short reads, and Hi-C reads. We achieved a median contig length of 34.94 Mbp and a total genome assembly of 903.2 Mbp. We annotated a total of 63,724 protein coding genes and performed a reconstruction and comparative analysis of the sucrose metabolism pathway. Nucleotide evolution measurements between orthologs with close species suggest that divergence between Saccharum officinarum and Saccharum spontaneum occurred <2 million years ago. Synteny analysis between CC 01-1940 and the S. spontaneum genome confirms the presence of translocation events between the species and a random contribution throughout the entire genome in current sugarcane hybrids. Analysis of RNA-Seq data from leaf and root tissue of contrasting sugarcane genotypes subjected to water stress treatments revealed 17,490 differentially expressed genes, from which 3,633 correspond to genes expressed exclusively in tolerant genotypes. We expect the resources presented here to serve as a source of information to improve the selection processes of new varieties of the breeding programs of sugarcane. Frontiers Media S.A. 2021-08-13 /pmc/articles/PMC8414525/ /pubmed/34484261 http://dx.doi.org/10.3389/fpls.2021.694859 Text en Copyright © 2021 Trujillo-Montenegro, Rodríguez Cubillos, Loaiza, Quintero, Espitia-Navarro, Salazar Villareal, Viveros Valens, González Barrios, De Vega, Duitama and Riascos. https://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 Plant Science
Trujillo-Montenegro, Jhon Henry
Rodríguez Cubillos, María Juliana
Loaiza, Cristian Darío
Quintero, Manuel
Espitia-Navarro, Héctor Fabio
Salazar Villareal, Fredy Antonio
Viveros Valens, Carlos Arturo
González Barrios, Andrés Fernando
De Vega, José
Duitama, Jorge
Riascos, John J.
Unraveling the Genome of a High Yielding Colombian Sugarcane Hybrid
title Unraveling the Genome of a High Yielding Colombian Sugarcane Hybrid
title_full Unraveling the Genome of a High Yielding Colombian Sugarcane Hybrid
title_fullStr Unraveling the Genome of a High Yielding Colombian Sugarcane Hybrid
title_full_unstemmed Unraveling the Genome of a High Yielding Colombian Sugarcane Hybrid
title_short Unraveling the Genome of a High Yielding Colombian Sugarcane Hybrid
title_sort unraveling the genome of a high yielding colombian sugarcane hybrid
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8414525/
https://www.ncbi.nlm.nih.gov/pubmed/34484261
http://dx.doi.org/10.3389/fpls.2021.694859
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