Literature DB >> 20220755

Whole-genome resequencing reveals loci under selection during chicken domestication.

Carl-Johan Rubin1, Michael C Zody, Jonas Eriksson, Jennifer R S Meadows, Ellen Sherwood, Matthew T Webster, Lin Jiang, Max Ingman, Ted Sharpe, Sojeong Ka, Finn Hallböök, Francois Besnier, Orjan Carlborg, Bertrand Bed'hom, Michèle Tixier-Boichard, Per Jensen, Paul Siegel, Kerstin Lindblad-Toh, Leif Andersson.   

Abstract

Domestic animals are excellent models for genetic studies of phenotypic evolution. They have evolved genetic adaptations to a new environment, the farm, and have been subjected to strong human-driven selection leading to remarkable phenotypic changes in morphology, physiology and behaviour. Identifying the genetic changes underlying these developments provides new insight into general mechanisms by which genetic variation shapes phenotypic diversity. Here we describe the use of massively parallel sequencing to identify selective sweeps of favourable alleles and candidate mutations that have had a prominent role in the domestication of chickens (Gallus gallus domesticus) and their subsequent specialization into broiler (meat-producing) and layer (egg-producing) chickens. We have generated 44.5-fold coverage of the chicken genome using pools of genomic DNA representing eight different populations of domestic chickens as well as red jungle fowl (Gallus gallus), the major wild ancestor. We report more than 7,000,000 single nucleotide polymorphisms, almost 1,300 deletions and a number of putative selective sweeps. One of the most striking selective sweeps found in all domestic chickens occurred at the locus for thyroid stimulating hormone receptor (TSHR), which has a pivotal role in metabolic regulation and photoperiod control of reproduction in vertebrates. Several of the selective sweeps detected in broilers overlapped genes associated with growth, appetite and metabolic regulation. We found little evidence that selection for loss-of-function mutations had a prominent role in chicken domestication, but we detected two deletions in coding sequences that we suggest are functionally important. This study has direct application to animal breeding and enhances the importance of the domestic chicken as a model organism for biomedical research.

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Year:  2010        PMID: 20220755     DOI: 10.1038/nature08832

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  34 in total

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Authors:  Orjan Carlborg; Lina Jacobsson; Per Ahgren; Paul Siegel; Leif Andersson
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Authors:  Lina Jacobsson; Hee-Bok Park; Per Wahlberg; Robert Fredriksson; Miguel Perez-Enciso; Paul B Siegel; Leif Andersson
Journal:  Genet Res       Date:  2005-10       Impact factor: 1.588

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Journal:  Anim Genet       Date:  2008-01-20       Impact factor: 3.169

7.  Ancestral TSH mechanism signals summer in a photoperiodic mammal.

Authors:  Elodie A Hanon; Gerald A Lincoln; Jean-Michel Fustin; Hugues Dardente; Mireille Masson-Pévet; Peter J Morgan; David G Hazlerigg
Journal:  Curr Biol       Date:  2008-08-05       Impact factor: 10.834

8.  Estimation of genetic effects and genotype-phenotype maps.

Authors:  Arnaud Le Rouzic; José M Alvarez-Castro
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9.  Proviral integrations and expression of endogenous avian leucosis virus during long term selection for high and low body weight in two chicken lines.

Authors:  Sojeong Ka; Susanne Kerje; Lina Bornold; Ulrika Liljegren; Paul B Siegel; Leif Andersson; Finn Hallböök
Journal:  Retrovirology       Date:  2009-07-15       Impact factor: 4.602

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Journal:  PLoS Genet       Date:  2008-02-29       Impact factor: 5.917

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Review 3.  An introduction to the medicinal plant genome project.

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Review 4.  Genome-wide genetic marker discovery and genotyping using next-generation sequencing.

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Review 7.  Deciphering the genetic basis of animal domestication.

Authors:  Pamela Wiener; Samantha Wilkinson
Journal:  Proc Biol Sci       Date:  2011-09-01       Impact factor: 5.349

8.  Establishing the validity of domestication genes using DNA from ancient chickens.

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9.  Assembly errors cause false tandem duplicate regions in the chicken (Gallus gallus) genome sequence.

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10.  Genome-wide association study of 8 carcass traits in Jinghai Yellow chickens using specific-locus amplified fragment sequencing technology.

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