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  2. Gene mapping - Wikipedia

    en.wikipedia.org/wiki/Gene_mapping

    There are two distinctive mapping approaches used in the field of genome mapping: genetic maps (also known as linkage maps) [7] and physical maps. [3] While both maps are a collection of genetic markers and gene loci, [8] genetic maps' distances are based on the genetic linkage information, while physical maps use actual physical distances usually measured in number of base pairs.

  3. Physical mapping - Wikipedia

    en.wikipedia.org/wiki/Physical_mapping

    Physical map is a technique used in molecular biology to find the order and physical distance between DNA base pairs by DNA markers. [1] It is one of the gene mapping techniques which can determine the sequence of DNA base pairs with high accuracy. Genetic mapping, another approach of gene mapping, can provide markers needed for the physical ...

  4. Association mapping - Wikipedia

    en.wikipedia.org/wiki/Association_Mapping

    In genetics, association mapping, also known as "linkage disequilibrium mapping", is a method of mapping quantitative trait loci (QTLs) that takes advantage of historic linkage disequilibrium to link phenotypes (observable characteristics) to genotypes (the genetic constitution of organisms), uncovering genetic associations.

  5. Forward genetics - Wikipedia

    en.wikipedia.org/wiki/Forward_genetics

    In the 1980s and 1990s, positional cloning consisted of genetic mapping, physical mapping, and discerning the gene mutation. [11] Discovering disease loci using old forward genetic techniques was a very long and difficult process and much of the work went into mapping and cloning the gene through association studies and chromosome walking.

  6. Comparative genomics - Wikipedia

    en.wikipedia.org/wiki/Comparative_genomics

    In comparative genomics, synteny is the preserved order of genes on chromosomes of related species indicating their descent from a common ancestor.Synteny provides a framework in which the conservation of homologous genes and gene order is identified between genomes of different species. [9]

  7. Pathway analysis - Wikipedia

    en.wikipedia.org/wiki/Pathway_analysis

    The data for pathway analysis come from high throughput biology.This includes high throughput sequencing data and microarray data. Before pathway analysis can be done, each gene's alteration should be evaluated using the omics dataset in either quantitative (differential expression analysis) or qualitative (detection of somatic point mutations or mapping neighbor genes to a disease-associated ...

  8. Genetic map function - Wikipedia

    en.wikipedia.org/wiki/Genetic_map_function

    One utility of this approach is that it allows one to obtain values for distances in genetic mapping units directly from recombination fractions, as map distances cannot typically be obtained from empirical experiments. [1] The simplest mapping function is the Morgan Mapping Function, eponymously devised by Thomas Hunt Morgan.

  9. Fate mapping - Wikipedia

    en.wikipedia.org/wiki/Fate_mapping

    Fate mapping can also be done through the use of molecular barcodes, which are introduced to the cell by retroviruses. [6] Genetic fate mapping is a technique developed in 1981 which uses a site-specific recombinase to track cell lineage genetically.