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A reverse genetic approach identifies an ancestral frameshift mutation in RP1 causing recessive progressive retinal degeneration in European cattle breeds

BACKGROUND: Domestication and artificial selection have resulted in strong genetic drift, relaxation of purifying selection and accumulation of deleterious mutations. As a consequence, bovine breeds experience regular outbreaks of recessive genetic defects which might represent only the tip of the i...

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Autores principales: Michot, Pauline, Chahory, Sabine, Marete, Andrew, Grohs, Cécile, Dagios, Dimitri, Donzel, Elise, Aboukadiri, Abdelhak, Deloche, Marie-Christine, Allais-Bonnet, Aurélie, Chambrial, Matthieu, Barbey, Sarah, Genestout, Lucie, Boussaha, Mekki, Danchin-Burge, Coralie, Fritz, Sébastien, Boichard, Didier, Capitan, Aurélien
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4980790/
https://www.ncbi.nlm.nih.gov/pubmed/27510606
http://dx.doi.org/10.1186/s12711-016-0232-y
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author Michot, Pauline
Chahory, Sabine
Marete, Andrew
Grohs, Cécile
Dagios, Dimitri
Donzel, Elise
Aboukadiri, Abdelhak
Deloche, Marie-Christine
Allais-Bonnet, Aurélie
Chambrial, Matthieu
Barbey, Sarah
Genestout, Lucie
Boussaha, Mekki
Danchin-Burge, Coralie
Fritz, Sébastien
Boichard, Didier
Capitan, Aurélien
author_facet Michot, Pauline
Chahory, Sabine
Marete, Andrew
Grohs, Cécile
Dagios, Dimitri
Donzel, Elise
Aboukadiri, Abdelhak
Deloche, Marie-Christine
Allais-Bonnet, Aurélie
Chambrial, Matthieu
Barbey, Sarah
Genestout, Lucie
Boussaha, Mekki
Danchin-Burge, Coralie
Fritz, Sébastien
Boichard, Didier
Capitan, Aurélien
author_sort Michot, Pauline
collection PubMed
description BACKGROUND: Domestication and artificial selection have resulted in strong genetic drift, relaxation of purifying selection and accumulation of deleterious mutations. As a consequence, bovine breeds experience regular outbreaks of recessive genetic defects which might represent only the tip of the iceberg since their detection depends on the observation of affected animals with distinctive symptoms. Thus, recessive mutations resulting in embryonic mortality or in non-specific symptoms are likely to be missed. The increasing availability of whole-genome sequences has opened new research avenues such as reverse genetics for their investigation. Our aim was to characterize the genetic load of 15 European breeds using data from the 1000 bull genomes consortium and prove that widespread harmful mutations remain to be detected. RESULTS: We listed 2489 putative deleterious variants (in 1923 genes) segregating at a minimal frequency of 5 % in at least one of the breeds studied. Gene enrichment analysis showed major enrichment for genes related to nervous, visual and auditory systems, and moderate enrichment for genes related to cardiovascular and musculoskeletal systems. For verification purposes, we investigated the phenotypic consequences of a frameshift variant in the retinitis pigmentosa-1 gene segregating in several breeds and at a high frequency (27 %) in Normande cattle. As described in certain human patients, clinical and histological examination revealed that this mutation causes progressive degeneration of photoreceptors leading to complete blindness in homozygotes. We established that the deleterious allele was even more frequent in the Normande breed before 1975 (>40 %) and has been progressively counter-selected likely because of its associated negative effect on udder morphology. Finally, using identity-by-descent analysis we demonstrated that this mutation resulted from a unique ancestral event that dates back to ~2800 to 4000 years. CONCLUSIONS: We provide a list of mutations that likely represent a substantial part of the genetic load of domestication in European cattle. We demonstrate that they accumulated non-randomly and that genes related to cognition and sensory functions are particularly affected. Finally, we describe an ancestral deleterious variant segregating in different breeds causing progressive retinal degeneration and irreversible blindness in adult animals. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s12711-016-0232-y) contains supplementary material, which is available to authorized users.
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spelling pubmed-49807902016-08-12 A reverse genetic approach identifies an ancestral frameshift mutation in RP1 causing recessive progressive retinal degeneration in European cattle breeds Michot, Pauline Chahory, Sabine Marete, Andrew Grohs, Cécile Dagios, Dimitri Donzel, Elise Aboukadiri, Abdelhak Deloche, Marie-Christine Allais-Bonnet, Aurélie Chambrial, Matthieu Barbey, Sarah Genestout, Lucie Boussaha, Mekki Danchin-Burge, Coralie Fritz, Sébastien Boichard, Didier Capitan, Aurélien Genet Sel Evol Research Article BACKGROUND: Domestication and artificial selection have resulted in strong genetic drift, relaxation of purifying selection and accumulation of deleterious mutations. As a consequence, bovine breeds experience regular outbreaks of recessive genetic defects which might represent only the tip of the iceberg since their detection depends on the observation of affected animals with distinctive symptoms. Thus, recessive mutations resulting in embryonic mortality or in non-specific symptoms are likely to be missed. The increasing availability of whole-genome sequences has opened new research avenues such as reverse genetics for their investigation. Our aim was to characterize the genetic load of 15 European breeds using data from the 1000 bull genomes consortium and prove that widespread harmful mutations remain to be detected. RESULTS: We listed 2489 putative deleterious variants (in 1923 genes) segregating at a minimal frequency of 5 % in at least one of the breeds studied. Gene enrichment analysis showed major enrichment for genes related to nervous, visual and auditory systems, and moderate enrichment for genes related to cardiovascular and musculoskeletal systems. For verification purposes, we investigated the phenotypic consequences of a frameshift variant in the retinitis pigmentosa-1 gene segregating in several breeds and at a high frequency (27 %) in Normande cattle. As described in certain human patients, clinical and histological examination revealed that this mutation causes progressive degeneration of photoreceptors leading to complete blindness in homozygotes. We established that the deleterious allele was even more frequent in the Normande breed before 1975 (>40 %) and has been progressively counter-selected likely because of its associated negative effect on udder morphology. Finally, using identity-by-descent analysis we demonstrated that this mutation resulted from a unique ancestral event that dates back to ~2800 to 4000 years. CONCLUSIONS: We provide a list of mutations that likely represent a substantial part of the genetic load of domestication in European cattle. We demonstrate that they accumulated non-randomly and that genes related to cognition and sensory functions are particularly affected. Finally, we describe an ancestral deleterious variant segregating in different breeds causing progressive retinal degeneration and irreversible blindness in adult animals. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s12711-016-0232-y) contains supplementary material, which is available to authorized users. BioMed Central 2016-08-10 /pmc/articles/PMC4980790/ /pubmed/27510606 http://dx.doi.org/10.1186/s12711-016-0232-y Text en © The Author(s) 2016 Open AccessThis article is 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 you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Michot, Pauline
Chahory, Sabine
Marete, Andrew
Grohs, Cécile
Dagios, Dimitri
Donzel, Elise
Aboukadiri, Abdelhak
Deloche, Marie-Christine
Allais-Bonnet, Aurélie
Chambrial, Matthieu
Barbey, Sarah
Genestout, Lucie
Boussaha, Mekki
Danchin-Burge, Coralie
Fritz, Sébastien
Boichard, Didier
Capitan, Aurélien
A reverse genetic approach identifies an ancestral frameshift mutation in RP1 causing recessive progressive retinal degeneration in European cattle breeds
title A reverse genetic approach identifies an ancestral frameshift mutation in RP1 causing recessive progressive retinal degeneration in European cattle breeds
title_full A reverse genetic approach identifies an ancestral frameshift mutation in RP1 causing recessive progressive retinal degeneration in European cattle breeds
title_fullStr A reverse genetic approach identifies an ancestral frameshift mutation in RP1 causing recessive progressive retinal degeneration in European cattle breeds
title_full_unstemmed A reverse genetic approach identifies an ancestral frameshift mutation in RP1 causing recessive progressive retinal degeneration in European cattle breeds
title_short A reverse genetic approach identifies an ancestral frameshift mutation in RP1 causing recessive progressive retinal degeneration in European cattle breeds
title_sort reverse genetic approach identifies an ancestral frameshift mutation in rp1 causing recessive progressive retinal degeneration in european cattle breeds
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4980790/
https://www.ncbi.nlm.nih.gov/pubmed/27510606
http://dx.doi.org/10.1186/s12711-016-0232-y
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