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利用100个微卫星标记对28个犬种群体的遗传变异进行分析。

Analysis of genetic variation in 28 dog breed populations with 100 microsatellite markers.

作者信息

Irion D N, Schaffer A L, Famula T R, Eggleston M L, Hughes S S, Pedersen N C

机构信息

Veterinary Genetics Laboratory, School of Veterinary Medicine, University of California, Davis, CA 95616, USA.

出版信息

J Hered. 2003 Jan-Feb;94(1):81-7. doi: 10.1093/jhered/esg004.

Abstract

Dog breeds were created by man choosing for select phenotypic traits such as size, shape, coat color, conformation, and behavior. Rigorous phenotypic selection likely resulted in a loss of genetic information. The present study extends previous dog population observations by assessing the genotypic variation within and across 28 breeds representing the seven recognized breed groups of the American Kennel Club (AKC). One hundred autosomal microsatellite markers distributed across the canine genome were used to examine variation within breeds. Resulting breed-specific allele frequencies were then used in an attempt to elucidate phylogeny and genetic distances between breeds. While the set of autosomal microsatellites was useful in describing genetic variation within breeds, establishing the genetic relatedness between breeds was less conclusive. A more accurate determination of breed phylogeny will likely require the use of single-nucleotide polymorphisms (SNPs).

摘要

犬种是人类通过选择特定的表型特征,如体型、形状、毛色、形态和行为而培育出来的。严格的表型选择可能导致了遗传信息的丢失。本研究通过评估代表美国养犬俱乐部(AKC)七个公认犬种组的28个犬种内部和之间的基因型变异,扩展了先前对犬类群体的观察。使用分布在犬类基因组中的100个常染色体微卫星标记来检测犬种内部的变异。然后,将得到的特定犬种等位基因频率用于试图阐明犬种之间的系统发育和遗传距离。虽然常染色体微卫星组在描述犬种内部的遗传变异方面很有用,但确定犬种之间的遗传相关性则不太确定。对犬种系统发育进行更准确的测定可能需要使用单核苷酸多态性(SNP)。

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