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The Rose-comb Mutation in Chickens Constitutes a Structural Rearrangement Causing Both Altered Comb Morphology and Defective Sperm Motility

Rose-comb, a classical monogenic trait of chickens, is characterized by a drastically altered comb morphology compared to the single-combed wild-type. Here we show that Rose-comb is caused by a 7.4 Mb inversion on chromosome 7 and that a second Rose-comb allele arose by unequal crossing over between...

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Autores principales: Imsland, Freyja, Feng, Chungang, Boije, Henrik, Bed'hom, Bertrand, Fillon, Valérie, Dorshorst, Ben, Rubin, Carl-Johan, Liu, Ranran, Gao, Yu, Gu, Xiaorong, Wang, Yanqiang, Gourichon, David, Zody, Michael C., Zecchin, William, Vieaud, Agathe, Tixier-Boichard, Michèle, Hu, Xiaoxiang, Hallböök, Finn, Li, Ning, Andersson, Leif
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3386170/
https://www.ncbi.nlm.nih.gov/pubmed/22761584
http://dx.doi.org/10.1371/journal.pgen.1002775
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author Imsland, Freyja
Feng, Chungang
Boije, Henrik
Bed'hom, Bertrand
Fillon, Valérie
Dorshorst, Ben
Rubin, Carl-Johan
Liu, Ranran
Gao, Yu
Gu, Xiaorong
Wang, Yanqiang
Gourichon, David
Zody, Michael C.
Zecchin, William
Vieaud, Agathe
Tixier-Boichard, Michèle
Hu, Xiaoxiang
Hallböök, Finn
Li, Ning
Andersson, Leif
author_facet Imsland, Freyja
Feng, Chungang
Boije, Henrik
Bed'hom, Bertrand
Fillon, Valérie
Dorshorst, Ben
Rubin, Carl-Johan
Liu, Ranran
Gao, Yu
Gu, Xiaorong
Wang, Yanqiang
Gourichon, David
Zody, Michael C.
Zecchin, William
Vieaud, Agathe
Tixier-Boichard, Michèle
Hu, Xiaoxiang
Hallböök, Finn
Li, Ning
Andersson, Leif
author_sort Imsland, Freyja
collection PubMed
description Rose-comb, a classical monogenic trait of chickens, is characterized by a drastically altered comb morphology compared to the single-combed wild-type. Here we show that Rose-comb is caused by a 7.4 Mb inversion on chromosome 7 and that a second Rose-comb allele arose by unequal crossing over between a Rose-comb and wild-type chromosome. The comb phenotype is caused by the relocalization of the MNR2 homeodomain protein gene leading to transient ectopic expression of MNR2 during comb development. We also provide a molecular explanation for the first example of epistatic interaction reported by Bateson and Punnett 104 years ago, namely that walnut-comb is caused by the combined effects of the Rose-comb and Pea-comb alleles. Transient ectopic expression of MNR2 and SOX5 (causing the Pea-comb phenotype) occurs in the same population of mesenchymal cells and with at least partially overlapping expression in individual cells in the comb primordium. Rose-comb has pleiotropic effects, as homozygosity in males has been associated with poor sperm motility. We postulate that this is caused by the disruption of the CCDC108 gene located at one of the inversion breakpoints. CCDC108 is a poorly characterized protein, but it contains a MSP (major sperm protein) domain and is expressed in testis. The study illustrates several characteristic features of the genetic diversity present in domestic animals, including the evolution of alleles by two or more consecutive mutations and the fact that structural changes have contributed to fast phenotypic evolution.
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spelling pubmed-33861702012-07-03 The Rose-comb Mutation in Chickens Constitutes a Structural Rearrangement Causing Both Altered Comb Morphology and Defective Sperm Motility Imsland, Freyja Feng, Chungang Boije, Henrik Bed'hom, Bertrand Fillon, Valérie Dorshorst, Ben Rubin, Carl-Johan Liu, Ranran Gao, Yu Gu, Xiaorong Wang, Yanqiang Gourichon, David Zody, Michael C. Zecchin, William Vieaud, Agathe Tixier-Boichard, Michèle Hu, Xiaoxiang Hallböök, Finn Li, Ning Andersson, Leif PLoS Genet Research Article Rose-comb, a classical monogenic trait of chickens, is characterized by a drastically altered comb morphology compared to the single-combed wild-type. Here we show that Rose-comb is caused by a 7.4 Mb inversion on chromosome 7 and that a second Rose-comb allele arose by unequal crossing over between a Rose-comb and wild-type chromosome. The comb phenotype is caused by the relocalization of the MNR2 homeodomain protein gene leading to transient ectopic expression of MNR2 during comb development. We also provide a molecular explanation for the first example of epistatic interaction reported by Bateson and Punnett 104 years ago, namely that walnut-comb is caused by the combined effects of the Rose-comb and Pea-comb alleles. Transient ectopic expression of MNR2 and SOX5 (causing the Pea-comb phenotype) occurs in the same population of mesenchymal cells and with at least partially overlapping expression in individual cells in the comb primordium. Rose-comb has pleiotropic effects, as homozygosity in males has been associated with poor sperm motility. We postulate that this is caused by the disruption of the CCDC108 gene located at one of the inversion breakpoints. CCDC108 is a poorly characterized protein, but it contains a MSP (major sperm protein) domain and is expressed in testis. The study illustrates several characteristic features of the genetic diversity present in domestic animals, including the evolution of alleles by two or more consecutive mutations and the fact that structural changes have contributed to fast phenotypic evolution. Public Library of Science 2012-06-28 /pmc/articles/PMC3386170/ /pubmed/22761584 http://dx.doi.org/10.1371/journal.pgen.1002775 Text en Imsland 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
Imsland, Freyja
Feng, Chungang
Boije, Henrik
Bed'hom, Bertrand
Fillon, Valérie
Dorshorst, Ben
Rubin, Carl-Johan
Liu, Ranran
Gao, Yu
Gu, Xiaorong
Wang, Yanqiang
Gourichon, David
Zody, Michael C.
Zecchin, William
Vieaud, Agathe
Tixier-Boichard, Michèle
Hu, Xiaoxiang
Hallböök, Finn
Li, Ning
Andersson, Leif
The Rose-comb Mutation in Chickens Constitutes a Structural Rearrangement Causing Both Altered Comb Morphology and Defective Sperm Motility
title The Rose-comb Mutation in Chickens Constitutes a Structural Rearrangement Causing Both Altered Comb Morphology and Defective Sperm Motility
title_full The Rose-comb Mutation in Chickens Constitutes a Structural Rearrangement Causing Both Altered Comb Morphology and Defective Sperm Motility
title_fullStr The Rose-comb Mutation in Chickens Constitutes a Structural Rearrangement Causing Both Altered Comb Morphology and Defective Sperm Motility
title_full_unstemmed The Rose-comb Mutation in Chickens Constitutes a Structural Rearrangement Causing Both Altered Comb Morphology and Defective Sperm Motility
title_short The Rose-comb Mutation in Chickens Constitutes a Structural Rearrangement Causing Both Altered Comb Morphology and Defective Sperm Motility
title_sort rose-comb mutation in chickens constitutes a structural rearrangement causing both altered comb morphology and defective sperm motility
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3386170/
https://www.ncbi.nlm.nih.gov/pubmed/22761584
http://dx.doi.org/10.1371/journal.pgen.1002775
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