Genetic association is when one or more genotypes within a population co-occur with a phenotypic trait more often than would be expected by chance occurrence.
Studies of genetic association aim to test whether single-locus alleles or genotype frequencies or more generally, multilocus haplotype frequencies differ between two groups of individuals usually diseased subjects and healthy controls). Genetic association studies are based on the principle that genotypes can be compared "directly", i.e. with the sequences of the actual genomes or exomes via whole genome sequencing or whole exome sequencing. Before 2010, DNA sequencing methods were used.
Genetic association can be between phenotypes, such as visible characteristics such as flower color or height, between a phenotype and a genetic polymorphism, such as a single nucleotide polymorphism (SNP), or between two genetic polymorphisms. Association between genetic polymorphisms occurs when there is non-random association of their alleles as a result of their proximity on the same chromosome; this is known as genetic linkage.
Linkage disequilibrium (LD) is a term used in the study of population genetics for the non-random association of alleles at two or more loci, not necessarily on the same chromosome. It is not the same as linkage, which is the phenomenon whereby two or more loci on a chromosome have reduced recombination between them because of their physical proximity to each other. LD describes a situation in which some combinations of alleles or genetic markers occur more or less frequently in a population than would be expected from a random formation of haplotypes from alleles based on their frequencies.
Genetic association studies are performed to determine whether a genetic variant is associated with a disease or trait: if association is present, a particular allele, genotype or haplotype of a polymorphism or polymorphisms will be seen more often than expected by chance in an individual carrying the trait.
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Une étude d'association pangénomique (en anglais genome-wide association study, GWAS) est une analyse de nombreuses variations génétiques chez de nombreux individus, afin d'étudier leurs corrélations avec des traits phénotypiques. Ces études se concentrent généralement sur les associations entre les polymorphismes nucléotidiques (SNP) et des phénotypes tels que les maladies humaines majeures. En effet, quand elle est appliquée sur des données humaines, une comparaison de séquences d’ADN se fait entre individus ayant plusieurs phénotypes différents pour un même caractère, la taille par exemple.
The candidate gene approach to conducting genetic association studies focuses on associations between genetic variation within pre-specified genes of interest, and phenotypes or disease states. This is in contrast to genome-wide association studies (GWAS), which is a hypothesis-free approach that scans the entire genome for associations between common genetic variants (typically SNPs) and traits of interest. Candidate genes are most often selected for study based on a priori knowledge of the gene's biological functional impact on the trait or disease in question.
L'épidémiologie génétique est l'étude du rôle des facteurs génétiques dans la détermination de la santé et de la maladie dans les familles et dans les populations ainsi que l'interaction de ces facteurs génétiques avec les facteurs environnementaux. L'épidémiologie génétique cherche à dériver une analyse statistique et quantitative du fonctionnement de la génétique dans de grands groupes. L'utilisation du terme épidémiologie génétique est apparue au milieu des années 1980 comme un nouveau domaine scientifique.
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Sharing data across multiple institutions for genome-wide association studies (GWAS) would enable discovery of novel genetic variants linked to health and disease. However, existing regulations on genomic data sharing and the sheer size of the data limit t ...