Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Genotype Data”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 361 records · Page 20Linked to original sources

Allelic association and deletions in autosomal recessive proximal spinal muscular atrophy: association of marker genotype with disease severity and candidate cDNAs.

The candidate region for spinal muscular atrophy (SMA) has been defined as a 750 kb interval on 5q13. In this study, we performed allelic association studies in 154 German SMA families with the multicopy markers Ag1-CA (D5S1556); C212 (D5F149S1/S2) and correlated genotype data with deletion of candidate genes. Both multicopy markers recognize 0-3 alleles pro chromosome. Deletions were detected for all copies of the markers Ag1-CA (C272) and C212 in 13 of 88 (15%) type I SMA patients and three of 48 (6%) type II patients. In all informative cases, the deletion was inherited from one parent. In two further cases (one type I and one type III SMA), de novo deletions of only one copy of Ag1-CA and C212 were found. In both cases the patients were homozygously deleted for the survival motor neuron (SMN) gene (exons 7 and 8) but only the type I SMA patient was deleted for the neuronal apoptosis inhibitory protein (NAIP) gene (exons 5 and 6). A third case (type II SMA) showed de novo deletion of SMN, but not of Ag1-CA, C212 and NAIP. Specific alleles of Ag1-CA and C212 showed significant association with SMA, particularly in type I SMA. When the number of marker copies defines genotypes, 1,1 (one allele on each chromosome) is found to be increased in type I SMA (50%) and 1,2 (one allele on one chromosome and two alleles on the other one) in type II SMA (60%). The 2,2 genotype (two alleles on each chromosome) was found in 4% of type I and II patients. By comparison, pooled normal genotype frequencies were 20, 44 and 36%, respectively. These results suggest a strong correlation between genotype and severity of disease. Based on these data we propose a model which indicates that type I SMA patients are composed of two severe alleles, type II of a mild and a severe, and type III of two mild alleles. Correlation of Ag1-CA genotype with deletion of the XS2G3/NAIP genes indicates that most patients with a deletion have a 1,1 genotype. Owing to the physical proximity of these markers, we propose that a large deletion occurs on type I SMA chromosomes that removes DNA between C212 and XS2G3/NAIP and that type II SMA results from compound heterozygosity for mild (small deletion) and severe mutations.

Alleles↗

Polyphasic taxonomy, a consensus approach to bacterial systematics.

Over the last 25 years, a much broader range of taxonomic studies of bacteria has gradually replaced the former reliance upon morphological, physiological, and biochemical characterization. This polyphasic taxonomy takes into account all available phenotypic and genotypic data and integrates them in a consensus type of classification, framed in a general phylogeny derived from 16S rRNA sequence analysis. In some cases, the consensus classification is a compromise containing a minimum of contradictions. It is thought that the more parameters that will become available in the future, the more polyphasic classification will gain stability. In this review, the practice of polyphasic taxonomy is discussed for four groups of bacteria chosen for their relevance, complexity, or both: the genera Xanthomonas and Campylobacter, the lactic acid bacteria, and the family Comamonadaceae. An evaluation of our present insights, the conclusions derived from it, and the perspectives of polyphasic taxonomy are discussed, emphasizing the keystone role of the species. Taxonomists did not succeed in standardizing species delimitation by using percent DNA hybridization values. Together with the absence of another "gold standard" for species definition, this has an enormous repercussion on bacterial taxonomy. This problem is faced in polyphasic taxonomy, which does not depend on a theory, a hypothesis, or a set of rules, presenting a pragmatic approach to a consensus type of taxonomy, integrating all available data maximally. In the future, polyphasic taxonomy will have to cope with (i) enormous amounts of data, (ii) large numbers of strains, and (iii) data fusion (data aggregation), which will demand efficient and centralized data storage. In the future, taxonomic studies will require collaborative efforts by specialized laboratories even more than now is the case. Whether these future developments will guarantee a more stable consensus classification remains an open question.

Amino Acid Sequence↗

A more powerful robust sib-pair test of linkage for quantitative traits.

A more powerful robust test for linkage is developed from the methodology of Haseman and Elston [Behav Genet 2(1):3-19, 1972]. This new robust test uses weighted least-squares (WLS) methods to detect linkage between a quantitative trait and a polymorphic marker. For comparison, the characteristics of a test for linakge that uses known trait genotypes for the parents are also studied. Sample sizes needed to detect linkage, calculated using asymptotic results, are compared for 1) the usual Haseman-Elston method, 2) the WLS method, and 3) the method that uses parental trait genotype data. The WLS method needs at most twice the number of sib pairs as does the method that uses information on the trait genotypes of the parents. The small sample properties of the Haseman-Elston (H-E) and WLS tests are investigated by simulation. The power calculations for the H-E method are found to be accurate. The power of the WLS method is overestimated when fewer than 300 sib pairs are studied, but the WLS method is nonetheless more powerful than the usual H-E method. In samples of fewer than 300 sib pairs, the WLS test tends to be anticonservative. Treating all sib pairs from sibships of size 3 or 5 as independent does not increase the significance of the tests.

Alleles↗

[Searching for a schizophrenia susceptibility gene in the 22q11 region].

OBJECTIVE: To investigate the genetic association for schizophrenia within the long arm region 1 band 1 of chromosome 22 (22q11) in a Han Chinese population. METHODS: Polymerase chain reaction (PCR)-based restriction fragment length polymorphism (RFLP) analysis was used to detect three single nucleotide polymorphism (SNPs), rs165655 (A/G base change) and rs165815 (C/T base change) present in the ARVCF (armadillo repeat gene deletion in velocardiofacial syndrome) locus, and rs756656 (A/C base change) in the LOC128979 (expressed sequence tags, EST) locus, among 100 nuclear families composed of fathers, mothers and affected offspring with schizophrenia. Genotyping data were analyzed by linkage disequilibrium methods including haplotype relative risk (HRR) analysis, transmission disequilibrium test (TDT) and haplotype transmission analysis. RESULTS: The genotype frequency distributions of three SNPs were all in Hardy-Weinberg equilibrium; Both HRR and TDT analysis showed that rs165815 was associated with schizophrenia (P < 0.05), whereas the other two SNPs did not show any allelic association. The haplotype transmission analysis showed a biased transmission for the rs165655-rs165815 haplotype system and for the rs756656-rs165655-rs165815 haplotype system (P < 0.01). CONCLUSION: Either ARVCF gene itself or a nearby locus might confer susceptibility to schizophrenia in a Han Chinese population.

Adult↗

Genetic control of IL-1beta bioactivity through differential regulation of the IL-1 receptor antagonist.

Regulation of IL-1 bioactivity by the IL-1 receptor antagonist (IL-1Ra) is critical for the preservation of normal vascular structure and function in mice. In humans, IL-1 bioactivity may be further fine-tuned by genetic polymorphisms. We recently proposed that an intronic polymorphism of the human gene encoding the IL-1R antagonist (IL1RN) is a genetic risk factor for the development of chronic cardiac allograft rejection. Here we aimed to establish a physiological basis for this susceptibility. Plasma and peripheral blood mononuclear cells (PBMC) were obtained from 55 healthy human volunteers, whose genotypes for four polymorphisms of IL1 family genes (IL1B, IL1R1 and IL1RN) were determined by PCR. IL-1beta and IL-1Ra production and release in PBMC cultures were studied by flow cytometry and ELISA. Functional and genotypic data were pooled and analyzed first by multivariate and, subsequently, by univariate statistical tests. We were able to confirm our observed association of IL1RN genotype with chronic cardiac allograft rejection using multivariate statistics. IL1RN genotype also emerged as the principal regulator of both constitutive and stimulated IL-1Ra and IL-1beta release. Allele IL1RN*2 was consistently associated with higher IL-1Ra and lower IL-1beta release, in a dosage-dependent manner. Conversely, IL1RN*2 carriage was associated with reduced production of the intracellular isoform of IL-1Ra. These genotypic effects were only observed with prolonged culture prior to stimulation and were not appreciably influenced by the presence of exogenous modulators of IL-1beta production. We conclude that IL1RN genotype is the principal determinant of IL-1beta bioactivity within theIL1 gene cluster in humans and discuss its putative role in disease.

Adult↗

Family-based association study of the serotonin-2A receptor gene (5-HT2A) and bipolar disorder.

OBJECTIVES: The serotonin 2A receptor gene (5-HT2A) is of great interest for research in neuropsychiatric disorders based on the observation that various neuroleptic agents and antidepressants bind with relatively high affinity at 5-HT2A receptors, and the fact that the receptor density in platelets tends to increase in depression. To test for the presence of association between 5-HT2A and bipolar disorder (BP), we studied a large number of triad families having probands affected with DSM-IV bipolar I (BPI), bipolar II (BPII) or schizoaffective disorder, bipolar type. METHODS: Two polymorphisms of 5-HT2A, 102T/C, and His452Tyr were analyzed in the 274 bipolar triad families. Both the transmission disequilibrium test (TDT) and haplotype TDT were performed on the genotype data. We also calculated the maternal transmission and paternal transmission for each allele and compared the mean ages of onset across probands grouped by genotype at each of the two markers. RESULTS: No significant transmission disequilibrium between the alleles of 5-HT2A and BP was found. Separate studies of the sub-phenotypes also failed to demonstrate significant association. However, we found a trend towards transmission disequilibrium with the haplotype 102C.His452 (p = 0.0504). This trend may become more significant with a larger sample size. SIGNIFICANCE: At present, results of this study suggest that the 5-HT2A is unlikely to play a major role in the genetic susceptibility to BP. Future studies will be directed towards increasing sample size, focusing on subtypes of BP or biochemical measures as phenotypes, and investigating other polymorphisms of 5-HT2A to provide more information at the DNA level.

Adult↗

Transmission ratio distortion in families from the Framingham Heart Study.

BACKGROUND: One implicit assumption in most linkage analysis is that live-born siblings unselected for a phenotype do not share alleles greater than the Mendelian expectation at any particular locus. However, since most families are recruited for genetic studies because of the presence of disease, there is little data available to confirm that this is the case. We hypothesized that loci that behave in a non-Mendelian fashion could be identified using genotype data from the Framingham Heart Study families. We tested the hypothesis that live-born sibs, either stratified by or irrespective of gender, demonstrate excess sharing of alleles on the autosomes, i.e., transmission ratio distortion. Multipoint linkage analysis of siblings either according to gender or not was performed using an allele-sharing method. Such observations may have implications for the mapping of loci for complex disease and quantitative traits in human pedigrees. RESULTS: No results that reached genome-wide significance were observed. However, four regions demonstrated excess sharing of alleles at p < 0.002 when sibships were stratified by gender-three of which were present in males. Of note, a female-specific locus co-localized with region that is linked to mean systolic blood pressure in the same families. In addition, three other regions demonstrated excess sharing of alleles in sibships irrespective of gender, including a region on chromosome 10p14-p15 (p = 7.5 x 10(-4)). CONCLUSION: Although no loci meeting genome-wide significance were detected to demonstrate transmission ratio distortion, loci with suggestive evidence for linkage were detected. These may have implications for the mapping of susceptibility loci for complex disease in human pedigrees.

Adolescent↗

The insulin gene region and susceptibility to insulin-dependent diabetes mellitus in four races; new insights from Afro-Caribbean race-specific haplotypes.

The IDDM2 component of the genetic susceptibility to insulin-dependent diabetes mellitus (IDDM) has been mapped to chromosome 11p15.5. The exact identity of IDDM2 remains uncertain. It has been suggested that IDDM2 maps within the 5' VNTR (variable number tandem repeat) polymorphism upstream of the insulin gene (INS). This has not been confirmed and a contribution from other INS gene region polymorphisms cannot be excluded. We present INS region genotype data from four racial groups: the Japanese, Hong Kong Chinese, North Indian Asians and Afro-Caribbeans (two groups; one born and resident in the UK, one in Jamaica). These races have not been previously studied with the range of INS region polymorphisms included here. No INS polymorphism was associated with IDDM across all races. These data from this study thus do not identify any INS polymorphism as IDDM2. The Afro-Caribbean race showed a very different distribution of INS genotypes from the other races and novel race-specific INS haplotypes were identified. Analysis of these excluded a contribution to susceptibility to IDDM from the- 23HphI INS polymorphism. An Afro-Caribbean INS haplotype which differed only at the VNTR from the very protective INS haplotype (VPH) identified in white Caucasians was detected. Population analysis of this haplotype will allow direct assessment of the role of the VNTR in susceptibility to IDDM. In conclusion, the diverse Afro-Caribbean TH/INS/IGF2 haplotypes identified in this study will be valuable in mapping IDDM2 more precisely.

Diabetes Mellitus, Type 1↗

Searching for a schizophrenia susceptibility gene in the 22q11 region.

OBJECTIVE: To investigate a genetic association for schizophrenia within chromosome 22q11 in a Chinese Han population. METHODS: The PCR-based restriction fragment length polymorphism (PCR-RFLP) analysis was used to detect three single nucleotide polymorphisms (SNPs), rs165655 (A/G base change) and rs165815 (C/T base change) present in the ARVCF (armadillo repeat gene deletion in velocardiofacial syndrome) locus, and rs756656 (A/C base change) in the LOC128979 (expressed sequence tags, EST) locus, among 100 Chinese family trios consisting of fathers, mothers and affected offspring with schizophrenia. Genotype data were analyzed by using linkage disequilibrium (LD) methods including haplotype relative risk (HRR) analysis, transmission disequilibrium test (TDT) and haplotype transmission analysis. RESULTS: The genotype frequency distributions of three SNPs were all in Hardy-Weinberg equilibrium (P>0.05). Both the HRR and the TDT analysis showed that rs165815 was associated with schizophrenia (chi2=6.447, df=1, P=0.011 and chi2=6.313, df=1, P=0.012, respectively), whereas the other two SNPs did not show any allelic association. The haplotype transmission analysis showed a biased transmission for the rs165655-rs165815 haplotype system (chi2=17.224, df=3, P=0.0006) and for the rs756656-rs165655-rs165815 hapoltype system (chi2=20.965, df=7, P=0.0038). CONCLUSION: Either the ARVCF gene itself or a nearby locus may confer susceptibility to schizophrenia in a Chinese Han population.

Adult↗

ALOHOMORA: a tool for linkage analysis using 10K SNP array data.

SUMMARY: ALOHOMORA is a software tool designed to facilitate genome-wide linkage studies performed with high-density single nucleotide polymorphism (SNP) marker panels such as the Affymetrix GeneChip(R) Human Mapping 10K Array. Genotype data are converted into appropriate formats for a number of common linkage programs and subjected to standard quality control routines before linkage runs are started. ALOHOMORA is written in Perl and may be used to perform state-of-the-art linkage scans in small and large families with any genetic model. Options for using different genetic maps or ethnicity-specific allele frequencies are implemented. Graphic outputs of whole-genome multipoint LOD score values are provided for the entire dataset as well as for individual families. AVAILABILITY: ALOHOMORA is available free of charge for non-commercial research institutions. For more details, see http://gmc.mdc-berlin.de/alohomora/

Algorithms↗

Lactobacillus rossii sp. nov., isolated from wheat sourdough.

Screening of sourdough lactic acid bacteria for bacteriocin production resulted in the isolation of a Gram-positive, catalase-negative, non-spore-forming, non-motile rod bacterium (strain CS1T) that could not be associated with any previously described species. Comparative 16S rRNA gene sequence analysis recognized strain CS1T as a distinct member of the genus Lactobacillus. By a species-specific PCR strategy, five additional strains previously isolated from sourdoughs were found to belong to the same species as strain CS1T, as confirmed by 16S rRNA gene sequence analysis. The closest related species were Lactobacillus durianis, Lactobacillus malefermentans and Lactobacillus suebicus, with which strain CS1T shared 93 % sequence similarity. For a further characterization of strain CS1T, physiological (growth temperature, CO2 production, hydrolysis of arginine, isomeric type of lactate, sugar fermentation) and chemotaxonomic (G+C content and peptidoglycan structure) properties were determined. Phenotypic characterization showed that strain CS1T was a member of the obligately heterofermentative group of the genus Lactobacillus. The DNA G+C content was 44.6 mol%. The peptidoglycan was of the A3alpha (L-Lys-L-Ser-L-Ala2) type. Physiological, biochemical and genotypic data, as well as results of DNA-DNA hybridization of genomic DNA with one of the closest phylogenetic relatives, L. durianis (34.3 %), indicated that strain CS1T represents a novel species of the genus Lactobacillus for which the name Lactobacillus rossii sp. nov. is proposed. The type strain of this species is CS1T (=ATCC BAA-822T=DSM 15814T).

Base Composition↗

Preliminary implementation of new data mining techniques for the analysis of simulation data from Genetic Analysis Workshop 12: problem 2.

We introduce a new data mining method applicable to complex disease genetics. Our approach is suited to a broad spectrum of diseases, identifying the noteworthy sharing of combinations of alleles in unrelated affected individuals. Furthermore, this approach may be extended to comprise the common types of genotype data, including single-nucleotide polymorphisms, candidate-gene sequences, etc. Using a method derived from data-mining computer algorithms, we analyze a data set of unrelated affected individuals chosen from the simulated pedigrees of problem 2 of the Genetics Analysis Workshop 12. We observe that most marker subsets containing a flanking marker for each of six or seven of the disease-gene loci yield significant numbers of individuals manifesting substantially similar genotypes. However, initial attempts (blind to the generating model) to identify the predisposing loci have not been successful. Refining our methods so that such loci may routinely be found and validated is underway.

Algorithms↗

International Equine Gene Mapping Workshop Report: a comprehensive linkage map constructed with data from new markers and by merging four mapping resources.

A comprehensive male linkage map was generated by adding 359 new, informative microsatellites to the International Equine Gene Map half-sibling reference families and by combining genotype data from three independent mapping resources: a full sibling family created at the Animal Health Trust in Newmarket, United Kingdom, eight half-sibling families from Sweden and two half-sibling families from the University of California, Davis. Because the combined data were derived primarily from half-sibling families, only autosomal markers were analyzed. The map was constructed from a total of 766 markers distributed on the 31 equine chromosomes. It has a higher marker density than that of previously reported maps, with 626 markers linearly ordered and 140 other markers assigned to a chromosomal region. Fifty-nine markers (7%) failed to meet the criteria for statistical evidence of linkage and remain unassigned. The map spans 3,740 cM with an average distance of 6.3 cM between markers. Fifty-five percent of the intervals are < or = 5 cM and only 3% > or = 20 cM. The present map demonstrates the cohesiveness of the different data sets and provides a single resource for genome scan analyses and integration with the radiation hybrid map.

Animals↗

PrP genotyping of Austrian sheep breeds.

Scrapie, an ovine and caprine transmissible spongiforme encephalopathy, is widely spread among sheep populations in many European countries. As it is known that susceptibility to scrapie is determined genetically, breeding programmes aiming at providing scrapie-resistant flocks have been established. Selection is based on the prion protein (PrP) genotype, which is used to classify animals into risk groups of susceptibility (R1-R5) according to the amino acids encoded by codons at positions 136, 154 and 171, respectively. At position 136 (136V-->136A) alanine and at position 154 (154H-->154R) as well as 171 (171Q-->171R) arginine are the favoured amino acids. Whereas PrP genotyping data are available for many of the European sheep breeds, comparable data for local Austrian sheep breeds are missing. The most known among these are Tyrolean mountain sheep, forest sheep. Tyrolean stone sheep and Carynthian sheep. The genotypes of 112 sheep from these four local breeds were determined. In terms of PrP genetics, Austrian breeds belong to the group of non-valine-breeds, with the exception of the Carynthian sheep, that exhibited a frequency of 136V of 4.2%. The most frequent allele was ARQ with 64.6-71.2% (depending on the breed), followed by ARR (14.8-25.8%). In contrast to the above-mentioned findings, scrapie has never been diagnosed in any of the Austrian sheep breeds. Native Austrian sheep breeds exhibit a very robust constitution, a pronounced adaptation to harsh climates and good reproduction parameters as well as a marked mother instinct. Therefore, these breeds are often used in crossbreeding programmes. Beside the above-mentioned characteristics, our results indicate that the investigated breeds may be effectively used in crossing-out breeding programmes for eliminating valine at position 136 of PrP.

Animal Husbandry↗

A coalescence-guided hierarchical Bayesian method for haplotype inference.

Haplotype inference from phase-ambiguous multilocus genotype data is an important task for both disease-gene mapping and studies of human evolution. We report a novel haplotype-inference method based on a coalescence-guided hierarchical Bayes model. In this model, a hierarchical structure is imposed on the prior haplotype frequency distributions to capture the similarities among modern-day haplotypes attributable to their common ancestry. As a consequence, the model both allows distinct haplotypes to have different a priori probabilities according to the inferred hierarchical ancestral structure and results in a proper joint posterior distribution for all the parameters of interest. A Markov chain-Monte Carlo scheme is designed to draw from this posterior distribution. By using coalescence-based simulation and empirically generated data sets (Whitehead Institute's inflammatory bowel disease data sets and HapMap data sets), we demonstrate the merits of the new method in comparison with HAPLOTYPER and PHASE, with or without the presence of recombination hotspots and missing genotypes.

Algorithms↗

Association of the PROC rs146922325 variant with venous thrombosis in a Taiwanese population.

BACKGROUND: Hereditary protein C deficiency, caused by pathogenic variants in the PROC gene, is a known risk factor for venous thrombosis. However, data on PROC variants in Asian populations are limited. This study evaluated the clinical relevance of rs146922325 and its association with thrombotic outcomes in Taiwanese patients. METHODS: Using genotyping data from a single-nucleotide polymorphism array as part of the Taiwan Precision Medicine Initiative, we conducted a retrospective case-control study that included 805 carriers of the PROC rs146922325 variant and 8,050 age- and sex-matched non-carriers. The baseline characteristics, coagulation profiles, and thrombotic outcomes were systematically compared. Univariable and multivariable logistic regression analyses were performed to assess the association between rs146922325 and venous thrombosis. Sensitivity analyses were conducted by restricting the cohort to warfarin-na&#xef;ve participants and incident venous thrombosis events occurring after genotyping. RESULTS: Carriers of the rs146922325 T allele exhibited significantly lower protein C levels than non-carriers (71.28% vs. 114.58%, p&#x2009;<&#x2009;0.001) and a higher prevalence of venous thrombosis (4.10% vs. 2.48%; p&#x2009;=&#x2009;0.009). After multivariable adjustment, rs146922325 carrier status remained independently associated with an increased risk of venous thrombosis (adjusted odds ratio [aOR], 1.61; p&#x2009;=&#x2009;0.015). Allelic analysis further indicated that the T allele was associated with elevated thrombotic risk (aOR, 1.74; p&#x2009;=&#x2009;0.004). No clear dose-response pattern was observed because of the limited number of homozygous TT individuals. Sex-stratified analyses suggested a similar association across sexes; however, the sex&#x2009;&#xd7;&#x2009;genotype interaction was not statistically significant. CONCLUSION: The PROC rs146922325 variant was associated with an increased risk of venous thrombosis in the Taiwanese population. These findings expand the current knowledge of PROC-related thrombophilia in East Asians and support the potential value of genetic risk stratification in thrombosis research.

PROC rs146922325↗

Selective phenotyping for increased efficiency in genetic mapping studies.

The power of a genetic mapping study depends on the heritability of the trait, the number of individuals included in the analysis, and the genetic dissimilarity among them. In experiments that involve microarrays or other complex physiological assays, phenotyping can be expensive and time-consuming and may impose limits on the sample size. A random selection of individuals may not provide sufficient power to detect linkage until a large sample size is reached. We present an algorithm for selecting a subset of individuals solely on the basis of genotype data that can achieve substantial improvements in sensitivity compared to a random sample of the same size. The selective phenotyping method involves preferentially selecting individuals to maximize their genotypic dissimilarity. Selective phenotyping is most effective when prior knowledge of genetic architecture allows us to focus on specific genetic regions. However, it can also provide modest improvements in efficiency when applied on a whole-genome basis. Importantly, selective phenotyping does not reduce the efficiency of mapping as compared to a random sample in regions that are not considered in the selection process. In contrast to selective genotyping, inferences based solely on a selectively phenotyped population of individuals are representative of the whole population. The substantial improvement introduced by selective phenotyping is particularly useful when phenotyping is difficult or costly and thus limits the sample size in a genetic mapping study.

Animals↗

Identification of candidate regions for familial idiopathic scoliosis.

STUDY DESIGN: A genomic screen and statistical linkage analysis of 202 families with at least two individuals with idiopathic scoliosis was performed. OBJECTIVES: To identify candidate regions or the autosomal loci that may be involved in the expression of familial idiopathic scoliosis. SUMMARY OF BACKGROUND DATA: A large sample of families with individuals having idiopathic scoliosis (202 families; 1,198 individuals) was ascertained; diagnoses were based on physical examination and radiographic criteria. METHODS: Model-independent linkage analysis of qualitative and quantitative traits (degree of lateral curvature) related to scoliosis was used to screen genotyping data from 391 markers in the 202 families. Subsets of families were determined before genotyping based on the most likely mode of inheritance for each family (autosomal dominant vs. X-linked dominant). Fine mapping results corroborated linkage in the primary candidate regions. RESULTS: Candidate regions on chromosomes 6, 9, 16, and 17 were considered to have the strongest evidence for linkage across all subsets considered. CONCLUSION: Linkage analyses have identified several candidate regions, a significant step in defining the genetic etiology of this disorder.

Family↗