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The Genome of the “Sea Vomit” Didemnum vexillum

Tunicates are the sister group of vertebrates and thus occupy a key position for investigations into vertebrate innovations as well as into the consequences of the vertebrate-specific genome duplications. Nevertheless, tunicate genomes have not been studied extensively in the past, and comparative s...

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Autores principales: Parra-Rincón, Ernesto, Velandia-Huerto, Cristian A., Gittenberger, Adriaan, Fallmann, Jörg, Gatter, Thomas, Brown, Federico D., Stadler, Peter F., Bermúdez-Santana, Clara I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8704543/
https://www.ncbi.nlm.nih.gov/pubmed/34947908
http://dx.doi.org/10.3390/life11121377
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author Parra-Rincón, Ernesto
Velandia-Huerto, Cristian A.
Gittenberger, Adriaan
Fallmann, Jörg
Gatter, Thomas
Brown, Federico D.
Stadler, Peter F.
Bermúdez-Santana, Clara I.
author_facet Parra-Rincón, Ernesto
Velandia-Huerto, Cristian A.
Gittenberger, Adriaan
Fallmann, Jörg
Gatter, Thomas
Brown, Federico D.
Stadler, Peter F.
Bermúdez-Santana, Clara I.
author_sort Parra-Rincón, Ernesto
collection PubMed
description Tunicates are the sister group of vertebrates and thus occupy a key position for investigations into vertebrate innovations as well as into the consequences of the vertebrate-specific genome duplications. Nevertheless, tunicate genomes have not been studied extensively in the past, and comparative studies of tunicate genomes have remained scarce. The carpet sea squirt Didemnum vexillum, commonly known as “sea vomit”, is a colonial tunicate considered an invasive species with substantial ecological and economical risk. We report the assembly of the D. vexillum genome using a hybrid approach that combines 28.5 Gb Illumina and 12.35 Gb of PacBio data. The new hybrid scaffolded assembly has a total size of 517.55 Mb that increases contig length about eightfold compared to previous, Illumina-only assembly. As a consequence of an unusually high genetic diversity of the colonies and the moderate length of the PacBio reads, presumably caused by the unusually acidic milieu of the tunic, the assembly is highly fragmented (L50 = 25,284, N50 = 6539). It is sufficient, however, for comprehensive annotations of both protein-coding genes and non-coding RNAs. Despite its shortcomings, the draft assembly of the “sea vomit” genome provides a valuable resource for comparative tunicate genomics and for the study of the specific properties of colonial ascidians.
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spelling pubmed-87045432021-12-25 The Genome of the “Sea Vomit” Didemnum vexillum Parra-Rincón, Ernesto Velandia-Huerto, Cristian A. Gittenberger, Adriaan Fallmann, Jörg Gatter, Thomas Brown, Federico D. Stadler, Peter F. Bermúdez-Santana, Clara I. Life (Basel) Article Tunicates are the sister group of vertebrates and thus occupy a key position for investigations into vertebrate innovations as well as into the consequences of the vertebrate-specific genome duplications. Nevertheless, tunicate genomes have not been studied extensively in the past, and comparative studies of tunicate genomes have remained scarce. The carpet sea squirt Didemnum vexillum, commonly known as “sea vomit”, is a colonial tunicate considered an invasive species with substantial ecological and economical risk. We report the assembly of the D. vexillum genome using a hybrid approach that combines 28.5 Gb Illumina and 12.35 Gb of PacBio data. The new hybrid scaffolded assembly has a total size of 517.55 Mb that increases contig length about eightfold compared to previous, Illumina-only assembly. As a consequence of an unusually high genetic diversity of the colonies and the moderate length of the PacBio reads, presumably caused by the unusually acidic milieu of the tunic, the assembly is highly fragmented (L50 = 25,284, N50 = 6539). It is sufficient, however, for comprehensive annotations of both protein-coding genes and non-coding RNAs. Despite its shortcomings, the draft assembly of the “sea vomit” genome provides a valuable resource for comparative tunicate genomics and for the study of the specific properties of colonial ascidians. MDPI 2021-12-10 /pmc/articles/PMC8704543/ /pubmed/34947908 http://dx.doi.org/10.3390/life11121377 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Parra-Rincón, Ernesto
Velandia-Huerto, Cristian A.
Gittenberger, Adriaan
Fallmann, Jörg
Gatter, Thomas
Brown, Federico D.
Stadler, Peter F.
Bermúdez-Santana, Clara I.
The Genome of the “Sea Vomit” Didemnum vexillum
title The Genome of the “Sea Vomit” Didemnum vexillum
title_full The Genome of the “Sea Vomit” Didemnum vexillum
title_fullStr The Genome of the “Sea Vomit” Didemnum vexillum
title_full_unstemmed The Genome of the “Sea Vomit” Didemnum vexillum
title_short The Genome of the “Sea Vomit” Didemnum vexillum
title_sort genome of the “sea vomit” didemnum vexillum
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8704543/
https://www.ncbi.nlm.nih.gov/pubmed/34947908
http://dx.doi.org/10.3390/life11121377
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