Development of a deer mouse whole-genome radiation hybrid panel and comparative mapping of Mus chromosome 11 loci

被引:0
作者
Clifton M. Ramsdell
Elizabeth L. Thames
Julie L. Weston
Michael J. Dewey
机构
[1] University of South Carolina, Peromyscus Genetic Stock Center, Department of Biological Sciences
来源
Mammalian Genome | 2006年 / 17卷
关键词
Linkage Group; Radiation Hybrid; Deer Mouse; Radiation Hybrid Panel; Retention Frequency;
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摘要
A 5000-rad whole-genome radiation hybrid cell panel (BW5000) was developed for mapping the deer mouse (Peromyscus maniculatus bairdii) genome. The panel consists of 103 cell lines and has an estimated marker retention frequency of 63.9% (range, 28%–88%) based on PCR typing of 30 Type I (coding gene) and 25 Type II (microsatellite) markers. Using the composite Mus map, Type I markers were selected from six Mus chromosomes, 22 of which are on Mus Chr 11. Fifteen of the Mus Chr 11 markers were simultaneously mapped on an interspecific (P. maniculatus × P.polionotus) backcross panel to test the utility of the radiation hybrid panel, create a framework map, and help establish gene order. The radiation hybrids have effectively detected linkage in the deer mouse genome between markers as far apart as 6.7 cM and resolved markers that are, in the Mus genome, as close as 0.2 Mb. Combined results from both panels have indicated a high degree of gene order conservation of the telomeric 64 cM of Mus Chr 11 in the deer mouse genome. The remaining centromeric portion also shows gene order conservation with the deer mouse but as a separate linkage group. This indicates a translocation of that portion of Mus Chr 11 in P. maniculatus and is consistent with rearrangement breakpoints observed between Mus and other mammalian genomes, including rat and human. Furthermore, this separate linkage group is likely to reside in a chromosomal region of inversion polymorphism between P. maniculatus and P. polionotus.
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页码:37 / 48
页数:11
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  • [1] Adkins RM(2001)Molecular phylogeny and divergence time estimates for major rodent groups: Evidence from multiple genes Mol Biol Evol 18 777-791
  • [2] Gelke EL(1984)Avian and mammalian hosts for spirochete-infected ticks and insects in a Lyme disease focus in Connecticut Yale J Biol Med 57 627-641
  • [3] Rowe D(1984)Prevalence of the Lyme disease spirochete in populations of white-tailed deer and white-footed mice Yale J Biol Med 57 651-659
  • [4] Honeycutt RL(1977)Genetic analysis of coat pattern variation in oldfield mice ( J Mammal 58 521-530
  • [5] Anderson JF(2002)) of western Florida Mamm Genome 13 89-94
  • [6] Magnarelli LA(1990)Construction of a 5000(rad) whole-genome radiation hybrid panel in the horse and generation of a comprehensive and comparative map for ECA11 Science 250 245-250
  • [7] Bosler EM(1965)Radiation hybrid mapping: a somatic cell genetic method for constructing high-resolution maps of mammalian chromosomes Evolution 19 44-55
  • [8] Ormiston BG(1982)Fertility and size inheritance in a Acta Theriol 16 213-230
  • [9] Coleman JL(1983) species cross Biochem Genet 21 1101-1114
  • [10] Hanrahan JP(1999)Protein polymorphisms in American deermice ( Mamm Genome 10 730-733