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Fast Homozygosity Mapping and Identification of a Zebrafish ENU-Induced Mutation by Whole-Genome Sequencing

Forward genetics using zebrafish is a powerful tool for studying vertebrate development through large-scale mutagenesis. Nonetheless, the identification of the molecular lesion is still laborious and involves time-consuming genetic mapping. Here, we show that high-throughput sequencing of the whole...

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Autores principales: Voz, Marianne L., Coppieters, Wouter, Manfroid, Isabelle, Baudhuin, Ariane, Von Berg, Virginie, Charlier, Carole, Meyer, Dirk, Driever, Wolfgang, Martial, Joseph A., Peers, Bernard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3319596/
https://www.ncbi.nlm.nih.gov/pubmed/22496837
http://dx.doi.org/10.1371/journal.pone.0034671
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author Voz, Marianne L.
Coppieters, Wouter
Manfroid, Isabelle
Baudhuin, Ariane
Von Berg, Virginie
Charlier, Carole
Meyer, Dirk
Driever, Wolfgang
Martial, Joseph A.
Peers, Bernard
author_facet Voz, Marianne L.
Coppieters, Wouter
Manfroid, Isabelle
Baudhuin, Ariane
Von Berg, Virginie
Charlier, Carole
Meyer, Dirk
Driever, Wolfgang
Martial, Joseph A.
Peers, Bernard
author_sort Voz, Marianne L.
collection PubMed
description Forward genetics using zebrafish is a powerful tool for studying vertebrate development through large-scale mutagenesis. Nonetheless, the identification of the molecular lesion is still laborious and involves time-consuming genetic mapping. Here, we show that high-throughput sequencing of the whole zebrafish genome can directly locate the interval carrying the causative mutation and at the same time pinpoint the molecular lesion. The feasibility of this approach was validated by sequencing the m1045 mutant line that displays a severe hypoplasia of the exocrine pancreas. We generated 13 Gb of sequence, equivalent to an eightfold genomic coverage, from a pool of 50 mutant embryos obtained from a map-cross between the AB mutant carrier and the WIK polymorphic strain. The chromosomal region carrying the causal mutation was localized based on its unique property to display high levels of homozygosity among sequence reads as it derives exclusively from the initial AB mutated allele. We developed an algorithm identifying such a region by calculating a homozygosity score along all chromosomes. This highlighted an 8-Mb window on chromosome 5 with a score close to 1 in the m1045 mutants. The sequence analysis of all genes within this interval revealed a nonsense mutation in the snapc4 gene. Knockdown experiments confirmed the assertion that snapc4 is the gene whose mutation leads to exocrine pancreas hypoplasia. In conclusion, this study constitutes a proof-of-concept that whole-genome sequencing is a fast and effective alternative to the classical positional cloning strategies in zebrafish.
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spelling pubmed-33195962012-04-11 Fast Homozygosity Mapping and Identification of a Zebrafish ENU-Induced Mutation by Whole-Genome Sequencing Voz, Marianne L. Coppieters, Wouter Manfroid, Isabelle Baudhuin, Ariane Von Berg, Virginie Charlier, Carole Meyer, Dirk Driever, Wolfgang Martial, Joseph A. Peers, Bernard PLoS One Research Article Forward genetics using zebrafish is a powerful tool for studying vertebrate development through large-scale mutagenesis. Nonetheless, the identification of the molecular lesion is still laborious and involves time-consuming genetic mapping. Here, we show that high-throughput sequencing of the whole zebrafish genome can directly locate the interval carrying the causative mutation and at the same time pinpoint the molecular lesion. The feasibility of this approach was validated by sequencing the m1045 mutant line that displays a severe hypoplasia of the exocrine pancreas. We generated 13 Gb of sequence, equivalent to an eightfold genomic coverage, from a pool of 50 mutant embryos obtained from a map-cross between the AB mutant carrier and the WIK polymorphic strain. The chromosomal region carrying the causal mutation was localized based on its unique property to display high levels of homozygosity among sequence reads as it derives exclusively from the initial AB mutated allele. We developed an algorithm identifying such a region by calculating a homozygosity score along all chromosomes. This highlighted an 8-Mb window on chromosome 5 with a score close to 1 in the m1045 mutants. The sequence analysis of all genes within this interval revealed a nonsense mutation in the snapc4 gene. Knockdown experiments confirmed the assertion that snapc4 is the gene whose mutation leads to exocrine pancreas hypoplasia. In conclusion, this study constitutes a proof-of-concept that whole-genome sequencing is a fast and effective alternative to the classical positional cloning strategies in zebrafish. Public Library of Science 2012-04-04 /pmc/articles/PMC3319596/ /pubmed/22496837 http://dx.doi.org/10.1371/journal.pone.0034671 Text en Voz et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Voz, Marianne L.
Coppieters, Wouter
Manfroid, Isabelle
Baudhuin, Ariane
Von Berg, Virginie
Charlier, Carole
Meyer, Dirk
Driever, Wolfgang
Martial, Joseph A.
Peers, Bernard
Fast Homozygosity Mapping and Identification of a Zebrafish ENU-Induced Mutation by Whole-Genome Sequencing
title Fast Homozygosity Mapping and Identification of a Zebrafish ENU-Induced Mutation by Whole-Genome Sequencing
title_full Fast Homozygosity Mapping and Identification of a Zebrafish ENU-Induced Mutation by Whole-Genome Sequencing
title_fullStr Fast Homozygosity Mapping and Identification of a Zebrafish ENU-Induced Mutation by Whole-Genome Sequencing
title_full_unstemmed Fast Homozygosity Mapping and Identification of a Zebrafish ENU-Induced Mutation by Whole-Genome Sequencing
title_short Fast Homozygosity Mapping and Identification of a Zebrafish ENU-Induced Mutation by Whole-Genome Sequencing
title_sort fast homozygosity mapping and identification of a zebrafish enu-induced mutation by whole-genome sequencing
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3319596/
https://www.ncbi.nlm.nih.gov/pubmed/22496837
http://dx.doi.org/10.1371/journal.pone.0034671
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