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  2. Single-nucleotide polymorphism - Wikipedia

    en.wikipedia.org/wiki/Single-nucleotide_polymorphism

    The upper DNA molecule differs from the lower DNA molecule at a single base-pair location (a G/A polymorphism) In genetics and bioinformatics, a single-nucleotide polymorphism (SNP / s n ɪ p /; plural SNPs / s n ɪ p s /) is a germline substitution of a single nucleotide at a specific position in the genome.

  3. SNP genotyping - Wikipedia

    en.wikipedia.org/wiki/SNP_genotyping

    The use of SNPs is being extended in the HapMap project, which aims to provide the minimal set of SNPs needed to genotype the human genome. SNPs can also provide a genetic fingerprint for use in identity testing. [1] The increase of interest in SNPs has been reflected by the furious development of a diverse range of SNP genotyping methods.

  4. Genome-wide association study - Wikipedia

    en.wikipedia.org/wiki/Genome-wide_association_study

    It identified two SNPs with significantly altered allele frequency between the two groups. These SNPs were located in the gene encoding complement factor H, which was an unexpected finding in the research of ARMD. The findings from these first GWA studies have subsequently prompted further functional research towards therapeutical manipulation ...

  5. Genotyping by sequencing - Wikipedia

    en.wikipedia.org/wiki/Genotyping_by_sequencing

    In the field of genetic sequencing, genotyping by sequencing, also called GBS, is a method to discover single nucleotide polymorphisms (SNP) in order to perform genotyping studies, such as genome-wide association studies . [1] GBS uses restriction enzymes to reduce genome complexity and genotype multiple DNA samples. [2]

  6. Sequence analysis - Wikipedia

    en.wikipedia.org/wiki/Sequence_analysis

    Nucleotide sequence analyses identify functional elements like protein binding sites, uncover genetic variations like SNPs, study gene expression patterns, and understand the genetic basis of traits. It helps to understand mechanisms that contribute to processes like replication and transcription. Some of the tasks involved are outlined below.

  7. SNP array - Wikipedia

    en.wikipedia.org/wiki/SNP_array

    A SNP array can also be used to generate a virtual karyotype using software to determine the copy number of each SNP on the array and then align the SNPs in chromosomal order. [10] SNPs can also be used to study genetic abnormalities in cancer. For example, SNP arrays can be used to study loss of heterozygosity (LOH). LOH occurs when one allele ...

  8. Phenome-wide association study - Wikipedia

    en.wikipedia.org/wiki/Phenome-wide_association_study

    An example of this pleiotropic discovery is a SNP that's already known to be associated with diabetes turns out to also be significantly associated with arthritis. [ 1 ] Even though novel associations between phenotype is discovered, further biological studies is necessary to determine whether it actually reflects the system.

  9. SNP annotation - Wikipedia

    en.wikipedia.org/wiki/SNP_annotation

    Single nucleotide polymorphism annotation (SNP annotation) is the process of predicting the effect or function of an individual SNP using SNP annotation tools. In SNP annotation the biological information is extracted, collected and displayed in a clear form amenable to query.