Analysis on genetic polymorphism of 13 STR loci on chromosomes 11 and 19 in Chinese hans

  • J. Li
  • , X. Liu
  • , Y. Gong
  • , C. Guo
  • , X. Liu
  • , Y. Zou
  • , Q. Liu
  • , B. Chen
  • , Y. Guo

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

Objective: To analyze the genetic polymorphism of 8 STR loci on chromosome 11 and 5 STR loci on chromosome 19 in Chinese Hans. Methods: Polymerase chain reaction-single strand length polymorphism(PCR-SSLP) was used to genotype 100 randomly selected individuals of the Han nationality at 8 STR loci (D11S1984, D11S1999, D11S1392, D11S1985, D11S2002, D11S1986, D11S4464 and D11S2359) on chromosome 11 and 5 STR loci (D19S247, D19S714, D19S433, D19S246, D19S254) on chromosome 19. Results: Eight alleles and 26 genotypes, 9 alleles and 15 genotypes, 6 alleles and 16 genotypes, 12 alleles and 40 genotypes, 6 alleles and 19 genotypes, 12 alleles and 48 genotypes, 8 alleles and 20 genotypes, 7 alleles and 13 genotypes were observed at D11S1984, DllS1999, D11S1392, D11S1985, D11S2002, D11S1986, D11S4464 and D11S2359. The heterozygosities for the 8 STR loci were 870%, 68%, 730%, 920%, 71%, 86%, 75% and 71%, respectively. Ten alleles and 19 genotypes, 10 alleles and 26 genotypes, 10 alleles and 24 genotypes, 11 alleles and 29 genotypes, 8 alleles and 18 genotypes were observed at D19S247, D19S714, D19S433, D19S246, D19S254. The heterozygosities for the 5 STR loci were 63%, 82% 72%, 81% 74%, respectively. Conclusion: The distribution of allele frequencies of 8 STR loci on chromosome 11 and 5 STR loci on chromosome 19 was consistent with the Hardy-Weinberg equilibrium and the highly genetic polymorphism was observed in Chinese Han population.

Original languageEnglish
Pages (from-to)173-177
Number of pages5
JournalChinese Journal of Medical Genetics
Volume18
Issue number3
StatePublished - 2001
Externally publishedYes

Keywords

  • Chromosome 11
  • Chromosome 19
  • Genetic polymorphism
  • Hardy-Weinberg equilibrium
  • Short tandem repeat

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