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Genome-Wide Analysis in German Shepherd Dogs Reveals Association of a Locus on CFA 27 with Atopic Dermatitis
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نویسنده
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tengvall k. ,kierczak m. ,bergvall k. ,olsson m. ,frankowiack m. ,farias f.h.g. ,pielberg g. ,carlborg ö. ,leeb t. ,andersson g. ,hammarström l. ,hedhammar å. ,lindblad-toh k.
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منبع
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plos genetics - 2013 - دوره : 9 - شماره : 5
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چکیده
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Humans and dogs are both affected by the allergic skin disease atopic dermatitis (ad),caused by an interaction between genetic and environmental factors. the german shepherd dog (gsd) is a high-risk breed for canine ad (cad). in this study,we used a swedish cohort of gsds as a model for human ad. serum iga levels are known to be lower in gsds compared to other breeds. we detected significantly lower iga levels in the cad cases compared to controls (p = 1.1×10-5) in our study population. we also detected a separation within the gsd cohort,where dogs could be grouped into two different subpopulations. disease prevalence differed significantly between the subpopulations contributing to population stratification (λ = 1.3),which was successfully corrected for using a mixed model approach. a genome-wide association analysis of cad was performed (ncases = 91,ncontrols = 88). iga levels were included in the model,due to the high correlation between cad and low iga levels. in addition,we detected a correlation between iga levels and the age at the time of sampling (corr = 0.42,p = 3.0×10-9),thus age was included in the model. a genome-wide significant association was detected on chromosome 27 (praw = 3.1×10-7,pgenome = 0.03). the total associated region was defined as a ∼1.5-mb-long haplotype including eight genes. through targeted re-sequencing and additional genotyping of a subset of identified snps,we defined 11 smaller haplotype blocks within the associated region. two blocks showed the strongest association to cad. the ∼209-kb region,defined by the two blocks,harbors only the pkp2 gene,encoding plakophilin 2 expressed in the desmosomes and important for skin structure. our results may yield further insight into the genetics behind both canine and human ad. © 2013 tengvall et al.
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آدرس
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science for life laboratory,department of medical biochemistry and microbiology,uppsala university,uppsala, Sweden, department of clinical sciences,computational genetics section,swedish university of agricultural sciences,uppsala, Sweden, department of clinical sciences,swedish university of agricultural sciences,uppsala, Sweden, science for life laboratory,department of medical biochemistry and microbiology,uppsala university,uppsala, Sweden, division of clinical immunology,department of laboratory medicine,karolinska institute at karolinska university hospital huddinge,stockholm, Sweden, science for life laboratory,department of medical biochemistry and microbiology,uppsala university,uppsala, Sweden, science for life laboratory,department of medical biochemistry and microbiology,uppsala university,uppsala, Sweden, department of clinical sciences,computational genetics section,swedish university of agricultural sciences,uppsala, Sweden, institute of genetics,university of bern,bern, Switzerland, department of animal breeding and genetics,swedish university of agricultural sciences,uppsala, Sweden, division of clinical immunology,department of laboratory medicine,karolinska institute at karolinska university hospital huddinge,stockholm, Sweden, department of clinical sciences,swedish university of agricultural sciences,uppsala, Sweden, science for life laboratory,department of medical biochemistry and microbiology,uppsala university,uppsala,sweden,broad institute of mit and harvard,cambridge,ma, United States
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Authors
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