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Improving the Chromosome-Level Genome Assembly of the Siamese Fighting Fish (Betta splendens) in a University Master’s Course

Ever decreasing costs along with advances in sequencing and library preparation technologies enable even small research groups to generate chromosome-level assemblies today. Here we report the generation of an improved chromosome-level assembly for the Siamese fighting fish (Betta splendens) that wa...

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Autores principales: Prost, Stefan, Petersen, Malte, Grethlein, Martin, Hahn, Sarah Joy, Kuschik-Maczollek, Nina, Olesiuk, Martyna Ewa, Reschke, Jan-Olaf, Schmey, Tamara Elke, Zimmer, Caroline, Gupta, Deepak K., Schell, Tilman, Coimbra, Raphael, De Raad, Jordi, Lammers, Fritjof, Winter, Sven, Janke, Axel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Genetics Society of America 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7341155/
https://www.ncbi.nlm.nih.gov/pubmed/32385046
http://dx.doi.org/10.1534/g3.120.401205
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author Prost, Stefan
Petersen, Malte
Grethlein, Martin
Hahn, Sarah Joy
Kuschik-Maczollek, Nina
Olesiuk, Martyna Ewa
Reschke, Jan-Olaf
Schmey, Tamara Elke
Zimmer, Caroline
Gupta, Deepak K.
Schell, Tilman
Coimbra, Raphael
De Raad, Jordi
Lammers, Fritjof
Winter, Sven
Janke, Axel
author_facet Prost, Stefan
Petersen, Malte
Grethlein, Martin
Hahn, Sarah Joy
Kuschik-Maczollek, Nina
Olesiuk, Martyna Ewa
Reschke, Jan-Olaf
Schmey, Tamara Elke
Zimmer, Caroline
Gupta, Deepak K.
Schell, Tilman
Coimbra, Raphael
De Raad, Jordi
Lammers, Fritjof
Winter, Sven
Janke, Axel
author_sort Prost, Stefan
collection PubMed
description Ever decreasing costs along with advances in sequencing and library preparation technologies enable even small research groups to generate chromosome-level assemblies today. Here we report the generation of an improved chromosome-level assembly for the Siamese fighting fish (Betta splendens) that was carried out during a practical university master’s course. The Siamese fighting fish is a popular aquarium fish and an emerging model species for research on aggressive behavior. We updated the current genome assembly by generating a new long-read nanopore-based assembly with subsequent scaffolding to chromosome-level using previously published Hi-C data. The use of ∼35x nanopore-based long-read data sequenced on a MinION platform (Oxford Nanopore Technologies) allowed us to generate a baseline assembly of only 1,276 contigs with a contig N50 of 2.1 Mbp, and a total length of 441 Mbp. Scaffolding using the Hi-C data resulted in 109 scaffolds with a scaffold N50 of 20.7 Mbp. More than 99% of the assembly is comprised in 21 scaffolds. The assembly showed the presence of 96.1% complete BUSCO genes from the Actinopterygii dataset indicating a high quality of the assembly. We present an improved full chromosome-level assembly of the Siamese fighting fish generated during a university master’s course. The use of ∼35× long-read nanopore data drastically improved the baseline assembly in terms of continuity. We show that relatively in-expensive high-throughput sequencing technologies such as the long-read MinION sequencing platform can be used in educational settings allowing the students to gain practical skills in modern genomics and generate high quality results that benefit downstream research projects.
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spelling pubmed-73411552020-07-21 Improving the Chromosome-Level Genome Assembly of the Siamese Fighting Fish (Betta splendens) in a University Master’s Course Prost, Stefan Petersen, Malte Grethlein, Martin Hahn, Sarah Joy Kuschik-Maczollek, Nina Olesiuk, Martyna Ewa Reschke, Jan-Olaf Schmey, Tamara Elke Zimmer, Caroline Gupta, Deepak K. Schell, Tilman Coimbra, Raphael De Raad, Jordi Lammers, Fritjof Winter, Sven Janke, Axel G3 (Bethesda) Genome Report Ever decreasing costs along with advances in sequencing and library preparation technologies enable even small research groups to generate chromosome-level assemblies today. Here we report the generation of an improved chromosome-level assembly for the Siamese fighting fish (Betta splendens) that was carried out during a practical university master’s course. The Siamese fighting fish is a popular aquarium fish and an emerging model species for research on aggressive behavior. We updated the current genome assembly by generating a new long-read nanopore-based assembly with subsequent scaffolding to chromosome-level using previously published Hi-C data. The use of ∼35x nanopore-based long-read data sequenced on a MinION platform (Oxford Nanopore Technologies) allowed us to generate a baseline assembly of only 1,276 contigs with a contig N50 of 2.1 Mbp, and a total length of 441 Mbp. Scaffolding using the Hi-C data resulted in 109 scaffolds with a scaffold N50 of 20.7 Mbp. More than 99% of the assembly is comprised in 21 scaffolds. The assembly showed the presence of 96.1% complete BUSCO genes from the Actinopterygii dataset indicating a high quality of the assembly. We present an improved full chromosome-level assembly of the Siamese fighting fish generated during a university master’s course. The use of ∼35× long-read nanopore data drastically improved the baseline assembly in terms of continuity. We show that relatively in-expensive high-throughput sequencing technologies such as the long-read MinION sequencing platform can be used in educational settings allowing the students to gain practical skills in modern genomics and generate high quality results that benefit downstream research projects. Genetics Society of America 2020-06-05 /pmc/articles/PMC7341155/ /pubmed/32385046 http://dx.doi.org/10.1534/g3.120.401205 Text en Copyright © 2020 Prost et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Genome Report
Prost, Stefan
Petersen, Malte
Grethlein, Martin
Hahn, Sarah Joy
Kuschik-Maczollek, Nina
Olesiuk, Martyna Ewa
Reschke, Jan-Olaf
Schmey, Tamara Elke
Zimmer, Caroline
Gupta, Deepak K.
Schell, Tilman
Coimbra, Raphael
De Raad, Jordi
Lammers, Fritjof
Winter, Sven
Janke, Axel
Improving the Chromosome-Level Genome Assembly of the Siamese Fighting Fish (Betta splendens) in a University Master’s Course
title Improving the Chromosome-Level Genome Assembly of the Siamese Fighting Fish (Betta splendens) in a University Master’s Course
title_full Improving the Chromosome-Level Genome Assembly of the Siamese Fighting Fish (Betta splendens) in a University Master’s Course
title_fullStr Improving the Chromosome-Level Genome Assembly of the Siamese Fighting Fish (Betta splendens) in a University Master’s Course
title_full_unstemmed Improving the Chromosome-Level Genome Assembly of the Siamese Fighting Fish (Betta splendens) in a University Master’s Course
title_short Improving the Chromosome-Level Genome Assembly of the Siamese Fighting Fish (Betta splendens) in a University Master’s Course
title_sort improving the chromosome-level genome assembly of the siamese fighting fish (betta splendens) in a university master’s course
topic Genome Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7341155/
https://www.ncbi.nlm.nih.gov/pubmed/32385046
http://dx.doi.org/10.1534/g3.120.401205
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