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PMID: 10631153 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Linkage disequilibrium and allele-frequency distributions for 114 single-nucleotide polymorphisms in five populations.

American journal of human genetics ·Vol. 66 ·No. 1 ·2000-01-00 ·Pages 216-34

Goddard KA, Hopkins PJ, Hall JM, Witte JS

Abstract

Single-nucleotide polymorphisms (SNPs) may be extremely important for deciphering the impact of genetic variation on complex human diseases. The ultimate value of SNPs for linkage and association mapping studies depends in part on the distribution of SNP allele frequencies and intermarker linkage disequilibrium (LD) across populations. Limited information is available about these distributions on a genomewide scale, particularly for LD. Using 114 SNPs from 33 genes, we compared these distributions in five American populations (727 individuals) of African, European, Chinese, Hispanic, and Japanese descent. The allele frequencies were highly correlated across populations but differed by >20% for at least one pair of populations in 35% of SNPs. The correlation in LD was high for some pairs of populations but not for others (e.g., Chinese American or Japanese American vs. any other population). Regardless of population, average minor-allele frequencies were significantly higher for SNPs in noncoding regions (20%-25%) than for SNPs in coding regions (12%-16%). Interestingly, we found that intermarker LD may be strongest with pairs of SNPs in which both markers are nonconservative substitutions, compared to pairs of SNPs where at least one marker is a conservative substitution. These results suggest that population differences and marker location within the gene may be important factors in the selection of SNPs for use in the study of complex disease with linkage or association mapping methods.

MeSH Terms
Alleles DNA Mutational Analysis Genotype Humans Linkage Disequilibrium Polymerase Chain Reaction Polymorphism, Single Nucleotide Population Racial Groups/genetics
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Goddard K A
Department of Epidemiology and Biostatistics, Case Western Reserve University, Cleveland, OH 44109-1998, USA. katrina@darwin.cwru.edu
Hopkins P J
Hall J M
Witte J S
References (43)
43 references, click to expand
  1. Non-random association between electromorphs and inversion chromosomes in finite populations.
    Genet Res. 1980 Feb;35(1):65-83 PMID: 7450499
  2. Patterns of single-nucleotide polymorphisms in candidate genes for blood-pressure homeostasis.
    Nat Genet. 1999 Jul;22(3):239-47 PMID: 10391210
  3. Power of the affected-sib-pair method for heterogeneous disorders.
    Genet Epidemiol. 1988;5(1):35-42 PMID: 3282981
  4. Linkage strategies for genetically complex traits. II. The power of affected relative pairs.
    Am J Hum Genet. 1990 Feb;46(2):229-41 PMID: 2301393
  5. Automated DNA diagnostics using an ELISA-based oligonucleotide ligation assay.
    Proc Natl Acad Sci U S A. 1990 Nov;87(22):8923-7 PMID: 2247466
  6. Genetic variation in Arizona Mexican Americans: estimation and interpretation of admixture proportions.
    Am J Phys Anthropol. 1991 Feb;84(2):141-57 PMID: 2021190
  7. Origins of U.S. Hispanics. Implications for diabetes.
    Diabetes Care. 1991 Jul;14(7):618-27 PMID: 1914811
  8. Caucasian genes in American blacks: new data.
    Am J Hum Genet. 1992 Jan;50(1):145-55 PMID: 1729885
  9. Identification of clusters of biallelic polymorphic sequence-tagged sites (pSTSs) that generate highly informative and automatable markers for genetic linkage mapping.
    Genomics. 1992 Feb;12(2):377-87 PMID: 1531472
  10. Study of an additional 58 DNA markers in five human populations from four continents.
    Gene Geogr. 1991 Dec;5(3):151-73 PMID: 1841601
  11. A novel gene containing a trinucleotide repeat that is expanded and unstable on Huntington's disease chromosomes. The Huntington's Disease Collaborative Research Group.
    Cell. 1993 Mar 26;72(6):971-83 PMID: 8458085
  12. Two-locus models of disease: comparison of likelihood and nonparametric linkage methods.
    Am J Hum Genet. 1993 Oct;53(4):908-15 PMID: 8213819
  13. High resolution of human evolutionary trees with polymorphic microsatellites.
    Nature. 1994 Mar 31;368(6470):455-7 PMID: 7510853
  14. Linkage disequilibrium predicts physical distance in the adenomatous polyposis coli region.
    Am J Hum Genet. 1994 May;54(5):884-98 PMID: 8178829
  15. Light-generated oligonucleotide arrays for rapid DNA sequence analysis.
    Proc Natl Acad Sci U S A. 1994 May 24;91(11):5022-6 PMID: 8197176
  16. Linkage disequilibrium mapping in isolated founder populations: diastrophic dysplasia in Finland.
    Nat Genet. 1992 Nov;2(3):204-11 PMID: 1345170
  17. Polymorphic admixture typing in human ethnic populations.
    Am J Hum Genet. 1994 Oct;55(4):788-808 PMID: 7942857
  18. The detection of linkage disequilibrium in molecular sequence data.
    Genetics. 1995 May;140(1):377-88 PMID: 7635301
  19. Origins and affinities of modern humans: a comparison of mitochondrial and nuclear genetic data.
    Am J Hum Genet. 1995 Sep;57(3):523-38 PMID: 7668280
  20. Maximum-likelihood estimation of molecular haplotype frequencies in a diploid population.
    Mol Biol Evol. 1995 Sep;12(5):921-7 PMID: 7476138
  21. A comparison of linkage disequilibrium measures for fine-scale mapping.
    Genomics. 1995 Sep 20;29(2):311-22 PMID: 8666377
  22. Testing for linkage disequilibrium in genotypic data using the Expectation-Maximization algorithm.
    Heredity (Edinb). 1996 Apr;76 ( Pt 4):377-83 PMID: 8626222
  23. Toward localization of the Werner syndrome gene by linkage disequilibrium and ancestral haplotyping: lessons learned from analysis of 35 chromosome 8p11.1-21.1 markers.
    Am J Hum Genet. 1996 Jun;58(6):1286-302 PMID: 8651307
  24. Parametric and nonparametric linkage analysis: a unified multipoint approach.
    Am J Hum Genet. 1996 Jun;58(6):1347-63 PMID: 8651312
  25. The future of genetic studies of complex human diseases.
    Science. 1996 Sep 13;273(5281):1516-7 PMID: 8801636
  26. Real time quantitative PCR.
    Genome Res. 1996 Oct;6(10):986-94 PMID: 8908518
  27. Microsatellite variation and the differentiation of modern humans.
    Hum Genet. 1997 Jan;99(1):1-7 PMID: 9003483
  28. Microsatellite diversity and the demographic history of modern humans.
    Proc Natl Acad Sci U S A. 1997 Apr 1;94(7):3100-3 PMID: 9096352
  29. The use of a genetic map of biallelic markers in linkage studies.
    Nat Genet. 1997 Sep;17(1):21-4 PMID: 9288093
  30. Nuclear DNA diversity in worldwide distributed human populations.
    Gene. 1997 Dec 31;205(1-2):161-71 PMID: 9461390
  31. Large-scale identification, mapping, and genotyping of single-nucleotide polymorphisms in the human genome.
    Science. 1998 May 15;280(5366):1077-82 PMID: 9582121
  32. DNA sequence diversity in a 9.7-kb region of the human lipoprotein lipase gene.
    Nat Genet. 1998 Jul;19(3):233-40 PMID: 9662394
  33. Haplotype structure and population genetic inferences from nucleotide-sequence variation in human lipoprotein lipase.
    Am J Hum Genet. 1998 Aug;63(2):595-612 PMID: 9683608
  34. Genetic admixture and gallbladder disease in Mexican Americans.
    Am J Phys Anthropol. 1998 Jul;106(3):361-71 PMID: 9696151
  35. A 4-Mb high-density single nucleotide polymorphism-based map around human APOE.
    Genomics. 1998 Nov 15;54(1):31-8 PMID: 9806827
  36. Genome screens using linkage disequilibrium tests: optimal marker characteristics and feasibility.
    Am J Hum Genet. 1998 Dec;63(6):1872-85 PMID: 9837839
  37. Comparison of the power and accuracy of biallelic and microsatellite markers in population-based gene-mapping methods.
    Am J Hum Genet. 1999 Feb;64(2):629-40 PMID: 9973302
  38. Genetic evidence for larger African population size during recent human evolution.
    Am J Phys Anthropol. 1999 Mar;108(3):251-60 PMID: 10096677
  39. Estimating European admixture in African Americans by using microsatellites and a microsatellite haplotype (CD4/Alu).
    Hum Genet. 1999 Feb;104(2):149-57 PMID: 10190326
  40. Sequence diversity in 36 candidate genes for cardiovascular disorders.
    Am J Hum Genet. 1999 Jul;65(1):183-91 PMID: 10364531
  41. Prospects for whole-genome linkage disequilibrium mapping of common disease genes.
    Nat Genet. 1999 Jun;22(2):139-44 PMID: 10369254
  42. Characterization of single-nucleotide polymorphisms in coding regions of human genes.
    Nat Genet. 1999 Jul;22(3):231-8 PMID: 10391209
  43. The detection of linkage disequilibrium between closely linked markers: RFLPs at the AI-CIII apolipoprotein genes.
    Am J Hum Genet. 1988 Jan;42(1):113-24 PMID: 2892394
Article Info
Journal
American journal of human genetics
Abbr.
Am J Hum Genet
ISSN
0002-9297
Published
2000-01-00
Pages
216-34
Language
English
Region
United States
NLM ID
0370475
PMCID
PMC1288328
Subset
IM
Grants
NCI NIH HHS · R29 CA073270 · United States
NCI NIH HHS · CA73270 · United States
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