High-throughput variation detection and genotyping using microarrays

被引:221
作者
Cutler, DJ [1 ]
Zwick, ME
Carrasquillo, MM
Yohn, CT
Tobin, KP
Kashuk, C
Mathews, DJ
Shah, NA
Eichler, EE
Warrington, JA
Chakravarti, A
机构
[1] Johns Hopkins Univ, Sch Med, McKusick Nathans Inst Genet Med, Baltimore, MD 21287 USA
[2] Affymetrix Inc, Santa Clara, CA 95051 USA
[3] Case Western Reserve Univ, Dept Genet, Cleveland, OH 44106 USA
关键词
D O I
10.1101/gr.197201
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The genetic dissection of complex traits may ultimately require a large number of SNPs to be a genotyped in multiple individuals who exhibit phenotypic variation in a trait of interest. Microarray technology can enable rapid genotyping of variation specific to study samples. To facilitate their use, we have developed an automated statistical method (ABACUS) to analyze microarray hybridization data and applied this method to Affymetrix Variation Detection Arrays (VDAS). ABACUS provides a quality score to individual genotypes, allowing investigators to focus their attention on sites that give accurate information. We have applied ABACUS to an experiment encompassing 32 autosomal and eight X-linked genomic regions, each consisting of similar to 50 kb of unique sequence spanning a 100-kb region, in 40 humans. At sufficiently high-quality scores, we are able to read similar to 80% of all sites. To assess the accuracy of SNP detection, 108 of 108 SNPs have been experimentally confirmed; an additional 371 SNPs have been confirmed electronically. To access the accuracy of diploid genotypes at segregating autosomal sites, we confirmed 1515 of 1515 homozygous calls, and 420 of 423 (99.29%) heterozygotes. In replicate experiments, consisting of independent amplification of identical samples followed by hybridization to distinct microarrays of the same design, genotyping is highly repeatable. In an autosomal replicate experiment, 813,295 of 813,295 genotypes are called identically (including 351 heterozygotes); at an X-linked focus in males (haploid), 841,236 of 841,236 sites are called identically.
引用
收藏
页码:1913 / 1925
页数:13
相关论文
共 41 条
[21]   Patterns of single-nucleotide polymorphisms in candidate genes for blood-pressure homeostasis [J].
Halushka, MK ;
Fan, JB ;
Bentley, K ;
Hsie, L ;
Shen, NP ;
Weder, A ;
Cooper, R ;
Lipshutz, R ;
Chakravarti, A .
NATURE GENETICS, 1999, 22 (03) :239-247
[22]   SBE-TAGS: An array-based method for efficient single-nucleotide polymorphism genotyping [J].
Hirschhorn, JN ;
Sklar, P ;
Lindblad-Toh, K ;
Lim, YM ;
Ruiz-Gutierrez, M ;
Bolk, S ;
Langhorst, B ;
Schaffner, S ;
Winchester, E ;
Lander, ES .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (22) :12164-12169
[23]   GENETIC DISSECTION OF COMPLEX TRAITS [J].
LANDER, ES ;
SCHORK, NJ .
SCIENCE, 1994, 265 (5181) :2037-2048
[24]   Initial sequencing and analysis of the human genome [J].
Lander, ES ;
Int Human Genome Sequencing Consortium ;
Linton, LM ;
Birren, B ;
Nusbaum, C ;
Zody, MC ;
Baldwin, J ;
Devon, K ;
Dewar, K ;
Doyle, M ;
FitzHugh, W ;
Funke, R ;
Gage, D ;
Harris, K ;
Heaford, A ;
Howland, J ;
Kann, L ;
Lehoczky, J ;
LeVine, R ;
McEwan, P ;
McKernan, K ;
Meldrim, J ;
Mesirov, JP ;
Miranda, C ;
Morris, W ;
Naylor, J ;
Raymond, C ;
Rosetti, M ;
Santos, R ;
Sheridan, A ;
Sougnez, C ;
Stange-Thomann, N ;
Stojanovic, N ;
Subramanian, A ;
Wyman, D ;
Rogers, J ;
Sulston, J ;
Ainscough, R ;
Beck, S ;
Bentley, D ;
Burton, J ;
Clee, C ;
Carter, N ;
Coulson, A ;
Deadman, R ;
Deloukas, P ;
Dunham, A ;
Dunham, I ;
Durbin, R ;
French, L .
NATURE, 2001, 409 (6822) :860-921
[25]   High density synthetic oligonucleotide arrays [J].
Lipshutz, RJ ;
Fodor, SPA ;
Gingeras, TR ;
Lockhart, DJ .
NATURE GENETICS, 1999, 21 (Suppl 1) :20-24
[26]   Light-directed synthesis of high-density oligonucleotide arrays using semiconductor photoresists [J].
McGall, G ;
Labadie, J ;
Brock, P ;
Wallraff, G ;
Nguyen, T ;
Hinsberg, W .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1996, 93 (24) :13555-13560
[27]  
*MCK NATH I GEN ME, 2001, ONL MEND INH MAN OMI
[28]   An SNP map of human chromosome 22 [J].
Mullikin, JC ;
Hunt, SE ;
Cole, CG ;
Mortimore, BJ ;
Rice, CM ;
Burton, J ;
Matthews, LH ;
Pavitt, R ;
Plumb, RW ;
Sims, SK ;
Ainscough, RMR ;
Attwood, J ;
Bailey, JM ;
Barlow, K ;
Bruskiewich, RMM ;
Butcher, PN ;
Carter, NP ;
Chen, Y ;
Clee, CM ;
Coggill, PC ;
Davies, J ;
Davies, RM ;
Dawson, E ;
Francis, MD ;
Joy, AA ;
Lamble, RG ;
Langford, CF ;
Macarthy, J ;
Mall, V ;
Moreland, A ;
Overton-Larty, EK ;
Ross, MT ;
Smith, LC ;
Steward, CA ;
Sulston, JE ;
Tinsley, EJ ;
Turney, KJ ;
Willey, DL ;
Wilson, GD ;
McMurray, AA ;
Dunham, I ;
Rogers, J ;
Bentley, DR .
NATURE, 2000, 407 (6803) :516-520
[29]   PolyPhred: Automating the detection and genotyping of single nucleotide substitutions using fluorescence-based resequencing [J].
Nickerson, DA ;
Tobe, VO ;
Taylor, SL .
NUCLEIC ACIDS RESEARCH, 1997, 25 (14) :2745-2751
[30]  
Parsons JD, 1995, COMPUT APPL BIOSCI, V11, P615