Analysis of DNA polymorphism at HLA-A locus by PCR amplification with sequence specific oligonucleotide probe in Chinese Han and Uygur populations.
Chunxia Yan, Yanping Song, Shuping Lai, Jianghua Lai, Hongbo Zhang, Junhai Zhao, Shengbin Li
Abstract
Chunxia Yan, Yanping Song, Shuping Lai, Jianghua Lai, Hongbo Zhang, Junhai Zhao, Shengbin Li
Abstract
To determine HLA-A genetic polymorphism in Chinese populations and establish ethnic genetic database, 165 Han and 162 Uygur subjects were investigated with a non-isotopic and sensitive method PCR-SSOP. 22 alleles were identified in Han with the most frequent allele being HLA-A * 1101 (19.7%), followed by * 0201 (12.72%). Also, 22 alleles were identified in Uygur with * 2407 (17.90%) being the most frequent one and the frequencies of following alleles: * 0201, * 0101, * 3301 were higher than 10%. HLA-A * 0203, * 0205, * 0210, * 0302, * 2403 and * 3302 were only detected in Han; meanwhile * 0205, * 0211, * 2301, * 2502, * 68012 and * 6802 were only in Uygur. According to Hardy-Weinberg equilibrium, each allele showed no significant (P > 0.05) deviation between the expected frequency and the observed one. Heterozygosity (H), discrimination power (DP) and probability of paternity exclusion (EPP) of HLA-A locus from Han nationality were computed to be 0.9029, 0.9776 and 0.8592; and those from Uygur as 0.9063, 0.9379 and 0.7885. These results suggest that HLA-A DNA polymorphism and the database of two Chinese populations have useful applications in processing forensic casework (as personal identification, paternity test), tracing population migration and genetic diagnosis.
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To determine HLA-A genetic polymorphism in Chinese populations and establish ethnic genetic database, 165 Han and 162 Uygur subjects were investigated with a non-isotopic and sensitive method PCR-SSOP. 22 alleles were identified in Han with the most frequent allele being HLA-A * 1101 (19.7%), followed by * 0201 (12.72%). Also, 22 alleles were identified in Uygur with * 2407 (17.90%) being the most frequent one and the frequencies of following alleles: * 0201, * 0101, * 3301 were higher than 10%. HLA-A * 0203, * 0205, * 0210, * 0302, * 2403 and * 3302 were only detected in Han; meanwhile * 0205, * 0211, * 2301, * 2502, * 68012 and * 6802 were only in Uygur. According to Hardy-Weinberg equilibrium, each allele showed no significant (P > 0.05) deviation between the expected frequency and the observed one. Heterozygosity (H), discrimination power (DP) and probability of paternity exclusion (EPP) of HLA-A locus from Han nationality were computed to be 0.9029, 0.9776 and 0.8592; and those from Uygur as 0.9063, 0.9379 and 0.7885. These results suggest that HLA-A DNA polymorphism and the database of two Chinese populations have useful applications in processing forensic casework (as personal identification, paternity test), tracing population migration and genetic diagnosis.
Key concepts: Biology, Genetics, Allele, Locus (genetics), Human leukocyte antigen, Loss of heterozygosity, Population, Allele frequency