Literature DB >> 12355401

Evaluating the results of genomewide linkage scans of complex traits by locus counting.

Steven Wiltshire1, Lon R Cardon, Mark I McCarthy.   

Abstract

The evaluation of results from primary genomewide linkage scans of complex human traits remains an area of importance and considerable debate. Apart from the usual assessment of statistical significance by use of asymptotic and empirical calculations, an additional means of evaluation--based on counting the number of distinct regions showing evidence of linkage--is possible. We have explored the characteristics of such a locus-counting method over a range of experimental conditions typically encountered during genomewide scans for complex trait loci. Under the null hypothesis, factors that have an impact on the informativeness of the data--such as map density, availability of parental data, and completeness of genotyping--are seen to markedly influence the number of regions of excess allele sharing and the empirically derived genomewide significance of the associated LOD score thresholds. In some circumstances, the expected number of regions is less than one-quarter of that predicted under the assumption of a dense map and complete extraction of inheritance information. We have applied this method to a previously analyzed data set--the Warren 2 genome scan for type 2-diabetes susceptibility--and demonstrate that more regions showing evidence for linkage were observed in the primary genome scan than would be expected by chance, across the whole range of LOD scores, even though no single linkage result achieved empirical genomewide statistical significance. Locus counting may be useful in assessing the results from genome scans for complex traits in general, especially because relatively few scans generate evidence for linkage reaching genomewide significance by dense-map criteria. By taking account of the effects of reduced data informativeness on the expected number of regions showing evidence for linkage, a more meaningful, and less conservative, evaluation of the results from such linkage studies is possible.

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Year:  2002        PMID: 12355401      PMCID: PMC385093          DOI: 10.1086/342976

Source DB:  PubMed          Journal:  Am J Hum Genet        ISSN: 0002-9297            Impact factor:   11.025


  19 in total

1.  A multipoint method for detecting genotyping errors and mutations in sibling-pair linkage data.

Authors:  J A Douglas; M Boehnke; K Lange
Journal:  Am J Hum Genet       Date:  2000-03-28       Impact factor: 11.025

2.  Genomewide linkage analysis of stature in multiple populations reveals several regions with evidence of linkage to adult height.

Authors:  J N Hirschhorn; C M Lindgren; M J Daly; A Kirby; S F Schaffner; N P Burtt; D Altshuler; A Parker; J D Rioux; J Platko; D Gaudet; T J Hudson; L C Groop; E S Lander
Journal:  Am J Hum Genet       Date:  2001-06-15       Impact factor: 11.025

3.  Genomewide scans of complex human diseases: true linkage is hard to find.

Authors:  J Altmüller; L J Palmer; G Fischer; H Scherb; M Wjst
Journal:  Am J Hum Genet       Date:  2001-09-14       Impact factor: 11.025

4.  A genome screen of families with multiple cases of prostate cancer: evidence of genetic heterogeneity.

Authors:  C L Hsieh; I Oakley-Girvan; R R Balise; J Halpern; R P Gallagher; A H Wu; L N Kolonel; L E O'Brien; I G Lin; D J Van Den Berg; C Z Teh; D W West; A S Whittemore
Journal:  Am J Hum Genet       Date:  2001-06-12       Impact factor: 11.025

5.  A schizophrenia-susceptibility locus at 6q25, in one of the world's largest reported pedigrees.

Authors:  E Lindholm; B Ekholm; S Shaw; P Jalonen; G Johansson; U Pettersson; R Sherrington; R Adolfsson; E Jazin
Journal:  Am J Hum Genet       Date:  2001-05-25       Impact factor: 11.025

Review 6.  How many diseases does it take to map a gene with SNPs?

Authors:  K M Weiss; J D Terwilliger
Journal:  Nat Genet       Date:  2000-10       Impact factor: 38.330

7.  A genomewide scan for loci predisposing to type 2 diabetes in a U.K. population (the Diabetes UK Warren 2 Repository): analysis of 573 pedigrees provides independent replication of a susceptibility locus on chromosome 1q.

Authors:  S Wiltshire; A T Hattersley; G A Hitman; M Walker; J C Levy; M Sampson; S O'Rahilly; T M Frayling; J I Bell; G M Lathrop; A Bennett; R Dhillon; C Fletcher; C J Groves; E Jones; P Prestwich; N Simecek; P V Rao; M Wishart; G F Bottazzo; R Foxon; S Howell; D Smedley; L R Cardon; S Menzel; M I McCarthy
Journal:  Am J Hum Genet       Date:  2001-08-01       Impact factor: 11.025

8.  Genetic variation in the gene encoding calpain-10 is associated with type 2 diabetes mellitus.

Authors:  Y Horikawa; N Oda; N J Cox; X Li; M Orho-Melander; M Hara; Y Hinokio; T H Lindner; H Mashima; P E Schwarz; L del Bosque-Plata; Y Horikawa; Y Oda; I Yoshiuchi; S Colilla; K S Polonsky; S Wei; P Concannon; N Iwasaki; J Schulze; L J Baier; C Bogardus; L Groop; E Boerwinkle; C L Hanis; G I Bell
Journal:  Nat Genet       Date:  2000-10       Impact factor: 38.330

9.  Comprehensive human genetic maps: individual and sex-specific variation in recombination.

Authors:  K W Broman; J C Murray; V C Sheffield; R L White; J L Weber
Journal:  Am J Hum Genet       Date:  1998-09       Impact factor: 11.025

10.  An analytic solution to single nucleotide polymorphism error-detection rates in nuclear families: implications for study design.

Authors:  D Gordon; S M Leal; S C Heath; J Ott
Journal:  Pac Symp Biocomput       Date:  2000
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  23 in total

1.  Dissection of genomewide-scan data in extended families reveals a major locus and oligogenic susceptibility for age-related macular degeneration.

Authors:  Sudha K Iyengar; Danhong Song; Barbara E K Klein; Ronald Klein; James H Schick; Jennifer Humphrey; Christopher Millard; Rachel Liptak; Karlie Russo; Gyungah Jun; Kristine E Lee; Bonnie Fijal; Robert C Elston
Journal:  Am J Hum Genet       Date:  2003-12-19       Impact factor: 11.025

2.  Combined analysis of genome scans of dutch and finnish families reveals a susceptibility locus for high-density lipoprotein cholesterol on chromosome 16q.

Authors:  Päivi Pajukanta; Hooman Allayee; Kelly L Krass; Ali Kuraishy; Aino Soro; Heidi E Lilja; Rebecca Mar; Marja-Riitta Taskinen; Ilpo Nuotio; Markku Laakso; Jerome I Rotter; Tjerk W A de Bruin; Rita M Cantor; Aldons J Lusis; Leena Peltonen
Journal:  Am J Hum Genet       Date:  2003-03-12       Impact factor: 11.025

Review 3.  Growing evidence for diabetes susceptibility genes from genome scan data.

Authors:  Mark I McCarthy
Journal:  Curr Diab Rep       Date:  2003-04       Impact factor: 4.810

4.  On the significance of linkage studies of complex traits.

Authors:  Christopher Newton-Cheh; Martin Larson; Sekar Kathiresan; Christopher O'Donnell
Journal:  Am J Hum Genet       Date:  2004-07       Impact factor: 11.025

5.  Transmission-ratio distortion and allele sharing in affected sib pairs: a new linkage statistic with reduced bias, with application to chromosome 6q25.3.

Authors:  Mathieu Lemire; Nicole M Roslin; Catherine Laprise; Thomas J Hudson; Kenneth Morgan
Journal:  Am J Hum Genet       Date:  2004-08-20       Impact factor: 11.025

6.  A genome wide linkage scan for dizygotic twinning in 525 families of mothers of dizygotic twins.

Authors:  Jodie N Painter; Gonneke Willemsen; Dale Nyholt; Chantal Hoekstra; David L Duffy; Anjali K Henders; Leanne Wallace; Sue Healey; Lisa A Cannon-Albright; Mark Skolnick; Nicholas G Martin; Dorret I Boomsma; Grant W Montgomery
Journal:  Hum Reprod       Date:  2010-04-08       Impact factor: 6.918

Review 7.  The effect of genotyping error in sib-pair genomewide linkage scans depends crucially upon the method of analysis.

Authors:  Kevin Walters
Journal:  J Hum Genet       Date:  2005-07-30       Impact factor: 3.172

8.  Applying novel genome-wide linkage strategies to search for loci influencing type 2 diabetes and adult height in American Samoa.

Authors:  Karolina Aberg; Guangyun Sun; Diane Smelser; Subba Rao Indugula; Hui-Ju Tsai; Matthew S Steele; John Tuitele; Ranjan Deka; Stephen T McGarvey; Daniel E Weeks
Journal:  Hum Biol       Date:  2008-04       Impact factor: 0.553

9.  Agreement among type 2 diabetes linkage studies but a poor correlation with results from genome-wide association studies.

Authors:  S Lillioja; A Wilton
Journal:  Diabetologia       Date:  2009-03-19       Impact factor: 10.122

10.  Attention deficit hyperactivity disorder: fine mapping supports linkage to 5p13, 6q12, 16p13, and 17p11.

Authors:  Matthew N Ogdie; Simon E Fisher; May Yang; Janeen Ishii; Clyde Francks; Sandra K Loo; Rita M Cantor; James T McCracken; James J McGough; Susan L Smalley; Stanley F Nelson
Journal:  Am J Hum Genet       Date:  2004-08-03       Impact factor: 11.025

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