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A hybrid-hierarchical genome assembly strategy to sequence the invasive golden mussel, Limnoperna fortunei

BACKGROUND: For more than 25 years, the golden mussel, Limnoperna fortunei, has aggressively invaded South American freshwaters, having travelled more than 5000 km upstream across 5 countries. Along the way, the golden mussel has outcompeted native species and economically harmed aquaculture, hydroe...

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Autores principales: Uliano-Silva, Marcela, Dondero, Francesco, Dan Otto, Thomas, Costa, Igor, Lima, Nicholas Costa Barroso, Americo, Juliana Alves, Mazzoni, Camila Junqueira, Prosdocimi, Francisco, Rebelo, Mauro de Freitas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5836269/
https://www.ncbi.nlm.nih.gov/pubmed/29267857
http://dx.doi.org/10.1093/gigascience/gix128
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author Uliano-Silva, Marcela
Dondero, Francesco
Dan Otto, Thomas
Costa, Igor
Lima, Nicholas Costa Barroso
Americo, Juliana Alves
Mazzoni, Camila Junqueira
Prosdocimi, Francisco
Rebelo, Mauro de Freitas
author_facet Uliano-Silva, Marcela
Dondero, Francesco
Dan Otto, Thomas
Costa, Igor
Lima, Nicholas Costa Barroso
Americo, Juliana Alves
Mazzoni, Camila Junqueira
Prosdocimi, Francisco
Rebelo, Mauro de Freitas
author_sort Uliano-Silva, Marcela
collection PubMed
description BACKGROUND: For more than 25 years, the golden mussel, Limnoperna fortunei, has aggressively invaded South American freshwaters, having travelled more than 5000 km upstream across 5 countries. Along the way, the golden mussel has outcompeted native species and economically harmed aquaculture, hydroelectric powers, and ship transit. We have sequenced the complete genome of the golden mussel to understand the molecular basis of its invasiveness and search for ways to control it. FINDINGS: We assembled the 1.6-Gb genome into 20 548 scaffolds with an N50 length of 312 Kb using a hybrid and hierarchical assembly strategy from short and long DNA reads and transcriptomes. A total of 60 717 coding genes were inferred from a customized transcriptome-trained AUGUSTUS run. We also compared predicted protein sets with those of complete molluscan genomes, revealing an exacerbation of protein-binding domains in L. fortunei. CONCLUSIONS: We built one of the best bivalve genome assemblies available using a cost-effective approach using Illumina paired-end, mate-paired, and PacBio long reads. We expect that the continuous and careful annotation of L. fortunei’s genome will contribute to the investigation of bivalve genetics, evolution, and invasiveness, as well as to the development of biotechnological tools for aquatic pest control.
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spelling pubmed-58362692018-03-09 A hybrid-hierarchical genome assembly strategy to sequence the invasive golden mussel, Limnoperna fortunei Uliano-Silva, Marcela Dondero, Francesco Dan Otto, Thomas Costa, Igor Lima, Nicholas Costa Barroso Americo, Juliana Alves Mazzoni, Camila Junqueira Prosdocimi, Francisco Rebelo, Mauro de Freitas Gigascience Data Note BACKGROUND: For more than 25 years, the golden mussel, Limnoperna fortunei, has aggressively invaded South American freshwaters, having travelled more than 5000 km upstream across 5 countries. Along the way, the golden mussel has outcompeted native species and economically harmed aquaculture, hydroelectric powers, and ship transit. We have sequenced the complete genome of the golden mussel to understand the molecular basis of its invasiveness and search for ways to control it. FINDINGS: We assembled the 1.6-Gb genome into 20 548 scaffolds with an N50 length of 312 Kb using a hybrid and hierarchical assembly strategy from short and long DNA reads and transcriptomes. A total of 60 717 coding genes were inferred from a customized transcriptome-trained AUGUSTUS run. We also compared predicted protein sets with those of complete molluscan genomes, revealing an exacerbation of protein-binding domains in L. fortunei. CONCLUSIONS: We built one of the best bivalve genome assemblies available using a cost-effective approach using Illumina paired-end, mate-paired, and PacBio long reads. We expect that the continuous and careful annotation of L. fortunei’s genome will contribute to the investigation of bivalve genetics, evolution, and invasiveness, as well as to the development of biotechnological tools for aquatic pest control. Oxford University Press 2017-12-15 /pmc/articles/PMC5836269/ /pubmed/29267857 http://dx.doi.org/10.1093/gigascience/gix128 Text en © The Author(s) 2017. Published by Oxford University Press. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Data Note
Uliano-Silva, Marcela
Dondero, Francesco
Dan Otto, Thomas
Costa, Igor
Lima, Nicholas Costa Barroso
Americo, Juliana Alves
Mazzoni, Camila Junqueira
Prosdocimi, Francisco
Rebelo, Mauro de Freitas
A hybrid-hierarchical genome assembly strategy to sequence the invasive golden mussel, Limnoperna fortunei
title A hybrid-hierarchical genome assembly strategy to sequence the invasive golden mussel, Limnoperna fortunei
title_full A hybrid-hierarchical genome assembly strategy to sequence the invasive golden mussel, Limnoperna fortunei
title_fullStr A hybrid-hierarchical genome assembly strategy to sequence the invasive golden mussel, Limnoperna fortunei
title_full_unstemmed A hybrid-hierarchical genome assembly strategy to sequence the invasive golden mussel, Limnoperna fortunei
title_short A hybrid-hierarchical genome assembly strategy to sequence the invasive golden mussel, Limnoperna fortunei
title_sort hybrid-hierarchical genome assembly strategy to sequence the invasive golden mussel, limnoperna fortunei
topic Data Note
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5836269/
https://www.ncbi.nlm.nih.gov/pubmed/29267857
http://dx.doi.org/10.1093/gigascience/gix128
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