Breed relationships facilitate fine-mapping studies: A 7.8-kb deletion cosegregates with Collie eye anomaly across multiple dog breeds
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Open Access
- 4 October 2007
- journal article
- Published by Cold Spring Harbor Laboratory in Genome Research
- Vol. 17 (11), 1562-1571
- https://doi.org/10.1101/gr.6772807
Abstract
The features of modern dog breeds that increase the ease of mapping common diseases, such as reduced heterogeneity and extensive linkage disequilibrium, may also increase the difficulty associated with fine mapping and identifying causative mutations. One way to address this problem is by combining data from multiple breeds segregating the same trait after initial linkage has been determined. The multibreed approach increases the number of potentially informative recombination events and reduces the size of the critical haplotype by taking advantage of shortened linkage disequilibrium distances found across breeds. In order to identify breeds that likely share a trait inherited from the same ancestral source, we have used cluster analysis to divide 132 breeds of dog into five primary breed groups. We then use the multibreed approach to fine-map Collie eye anomaly (cea), a complex disorder of ocular development that was initially mapped to a 3.9-cM region on canine chromosome 37. Combined genotypes from affected individuals from four breeds of a single breed group significantly narrowed the candidate gene region to a 103-kb interval spanning only four genes. Sequence analysis revealed that all affected dogs share a homozygous deletion of 7.8 kb in the NHEJ1 gene. This intronic deletion spans a highly conserved binding domain to which several developmentally important proteins bind. This work both establishes that the primary cea mutation arose as a single disease allele in a common ancestor of herding breeds as well as highlights the value of comparative population analysis for refining regions of linkage.Keywords
This publication has 42 references indexed in Scilit:
- Finding cardiovascular disease genes in the dogJournal of Veterinary Cardiology, 2006
- Uveal coloboma: clinical and basic science updateCurrent Opinion in Opthalmology, 2006
- Identical mutation in a novel retinal gene causes progressive rod–cone degeneration in dogs and retinitis pigmentosa in humansGenomics, 2006
- Linkage disequilibrium mapping in domestic dog breeds narrows the progressive rod–cone degeneration interval and identifies ancestral disease-transmitting chromosomeGenomics, 2006
- genalex 6: genetic analysis in Excel. Population genetic software for teaching and researchMolecular Ecology Notes, 2005
- Canine Genomics and Genetics: Running with the PackPLoS Genetics, 2005
- How retroviruses select their genomesNature Reviews Microbiology, 2005
- Evolutionarily conserved elements in vertebrate, insect, worm, and yeast genomesGenome Research, 2005
- Detecting the number of clusters of individuals using the software structure: a simulation studyMolecular Ecology, 2005
- Linkage mapping of the primary disease locus for collie eye anomaly☆Genomics, 2003