An integrated linkage-radiation hybrid map of the canine genome

被引:0
|
作者
Cathryn S. Mellersh
Christophe Hitte
Melissa Richman
Francoise Vignaux
Catherine Priat
Sophie Jouquand
Petra Werner
Catherine André
Susan DeRose
Donald F. Patterson
Elaine A. Ostrander
Francis Galibert
机构
[1] Clinical Research Division,
[2] Fred Hutchinson Cancer Research Center,undefined
[3] 1100 Fairview Avenue N.,undefined
[4] D4-100,undefined
[5] P.O. Box 19024,undefined
[6] Seattle,undefined
[7] Washington 98109-1024,undefined
[8] USA,undefined
[9] UPR 41 CNRS,undefined
[10] Recombinaisons Génétiques,undefined
[11] Faculté de Médecine,undefined
[12] 2 Avenue du Professeur Léon Bernard,undefined
[13] 35043 Rennes Cédex,undefined
[14] France,undefined
[15] Section of Medical Genetics and Center for Comparative Medical Genetics,undefined
[16] University of Pennsylvania School of Veterinary Medicine,undefined
[17] Philadelphia,undefined
[18] Pennsylvania 19104,undefined
[19] USA,undefined
来源
Mammalian Genome | 2000年 / 11卷
关键词
Genetic Disease; Mapping Power; Behavioral Characteristic; Strong Selection; Radiation Hybrid;
D O I
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中图分类号
学科分类号
摘要
Purebred dogs are a unique resource for dissecting the molecular basis of simple and complex genetic diseases and traits. As a result of strong selection for physical and behavioral characteristics among the 300 established breeds, modern dogs are characterized by high levels of interbreed variation, complemented by significant intrabreed homogeneity. A high-resolution map of the canine genome is necessary to exploit the mapping power of this unusual resource. We describe here the integration of an expanded canine radiation hybrid map, comprised of 600 markers, with the latest linkage map of 341 markers, to generate a map of 724 markers—the densest map of the canine genome described to date. Through the inclusion of 217 markers on both the linkage and RH maps, the 77 RH groups are reduced to 44 syntenic groups, thus providing comprehensive coverage of most of the canine genome.
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页码:120 / 130
页数:10
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