Detection of Selection Signatures on the X Chromosome in Three Sheep Breeds

Artificial selection has played a critical role in animal breeding. Detection of artificial selection footprints in genomic regions can provide insights for understanding the function of specific phenotypic traits and better guide animal breeding. To more fully understand the relationship between ge...

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Veröffentlicht in:International journal of molecular sciences 2015-08, Vol.16 (9), p.20360-20374
Hauptverfasser: Zhu, Caiye, Fan, Hongying, Yuan, Zehu, Hu, Shijin, Zhang, Li, Wei, Caihong, Zhang, Qin, Zhao, Fuping, Du, Lixin
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container_end_page 20374
container_issue 9
container_start_page 20360
container_title International journal of molecular sciences
container_volume 16
creator Zhu, Caiye
Fan, Hongying
Yuan, Zehu
Hu, Shijin
Zhang, Li
Wei, Caihong
Zhang, Qin
Zhao, Fuping
Du, Lixin
description Artificial selection has played a critical role in animal breeding. Detection of artificial selection footprints in genomic regions can provide insights for understanding the function of specific phenotypic traits and better guide animal breeding. To more fully understand the relationship between genomic composition and phenotypic diversity arising from breed development, a genome-wide scan was conducted using an OvineSNP50 BeadChip and integrated haplotype score and fixation index analyses to detect selection signatures on the X chromosome in three sheep breeds. We identified 49, 34, and 55 candidate selection regions with lengths of 27.49, 16.47, and 25.42 Mb in German Mutton, Dorper, and Sunit sheep, respectively. Bioinformatics analysis showed that some of the genes in these regions with selection signatures, such as BMP15, were relevant to reproduction. We also identified some selection regions harboring genes that had human orthologs, including BKT, CENPI, GUCY2F, MSN, PCDH11X, PLP1, VSIG4, PAK3, WAS, PCDH19, PDHA1, and SRPX2. The VSIG4 and PCDH11X genes are associated with the immune system and disease, PDHA1 is associated with biosynthetic related pathways, and PCDH19 is expressed in the nervous system and skin. These genes may be useful as candidate genes for molecular breeding.
doi_str_mv 10.3390/ijms160920360
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Detection of artificial selection footprints in genomic regions can provide insights for understanding the function of specific phenotypic traits and better guide animal breeding. To more fully understand the relationship between genomic composition and phenotypic diversity arising from breed development, a genome-wide scan was conducted using an OvineSNP50 BeadChip and integrated haplotype score and fixation index analyses to detect selection signatures on the X chromosome in three sheep breeds. We identified 49, 34, and 55 candidate selection regions with lengths of 27.49, 16.47, and 25.42 Mb in German Mutton, Dorper, and Sunit sheep, respectively. Bioinformatics analysis showed that some of the genes in these regions with selection signatures, such as BMP15, were relevant to reproduction. We also identified some selection regions harboring genes that had human orthologs, including BKT, CENPI, GUCY2F, MSN, PCDH11X, PLP1, VSIG4, PAK3, WAS, PCDH19, PDHA1, and SRPX2. 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source MDPI - Multidisciplinary Digital Publishing Institute; MEDLINE; Elektronische Zeitschriftenbibliothek - Frei zugängliche E-Journals; PubMed Central
subjects Animals
Breeding
Breeding of animals
Chromosomes
Evolution, Molecular
Genetic Markers
Genomics - methods
Genotype & phenotype
Haplotypes
Polymorphism, Single Nucleotide
Selection, Genetic
Sheep
X Chromosome
title Detection of Selection Signatures on the X Chromosome in Three Sheep Breeds
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