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  2. Genetic distance - Wikipedia

    en.wikipedia.org/wiki/Genetic_distance

    This distance assumes that genetic differences arise due to mutation and genetic drift, but this distance measure is known to give more reliable population trees than other distances particularly for microsatellite DNA data. This method is not ideal in cases where natural selection plays a significant role in a populations genetics.

  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. Gene mapping - Wikipedia

    en.wikipedia.org/wiki/Gene_mapping

    The genetic basis to gene maps is to provide an outline that can potentially help researchers carry out DNA sequencing. A gene map helps point out the relative positions of genes and allows researchers to locate regions of interest in the genome. Genes can then be identified quickly and sequenced quickly. [6] Two approaches to generating gene ...

  5. DNA–DNA hybridization - Wikipedia

    en.wikipedia.org/wiki/DNADNA_hybridization

    In genomics, DNADNA hybridization is a molecular biology technique that measures the degree of genetic similarity between DNA sequences. It is used to determine the genetic distance between two organisms and has been used extensively in phylogeny and taxonomy .

  6. Distance matrices in phylogeny - Wikipedia

    en.wikipedia.org/wiki/Distance_matrices_in_phylogeny

    Distance-matrix methods of phylogenetic analysis explicitly rely on a measure of "genetic distance" between the sequences being classified, and therefore they start with a multiple sequence alignment (MSA) as an input. From it, they construct an all-to-all matrix describing the distance between each sequence pair.

  7. Chromosome jumping - Wikipedia

    en.wikipedia.org/wiki/Chromosome_jumping

    Chromosome jumping enables two ends of a DNA sequence to be cloned without the middle section. Genomic DNA may be partially digested using restriction endonuclease and with the aid of DNA ligase, the fragments are circularized at low concentration. [2] [3] From a known sequence, a primer is designed to sequence across the circularized junction.

  8. PHYLIP - Wikipedia

    en.wikipedia.org/wiki/PHYLIP

    Genetic distance program which computes one of three different genetic distance formulas from gene frequency data pars Unordered multistate discrete-characters parsimony method mix Estimates phylogenies by some parsimony methods for discrete character data with two states (0, 1); allows using methods: Wagner, Camin-Sokal, or arbitrary mixes penny

  9. Molecular phylogenetics - Wikipedia

    en.wikipedia.org/wiki/Molecular_phylogenetics

    Molecular phylogenetics (/ m ə ˈ l ɛ k j ʊ l ər ˌ f aɪ l oʊ dʒ ə ˈ n ɛ t ɪ k s, m ɒ-, m oʊ-/ [1] [2]) is the branch of phylogeny that analyzes genetic, hereditary molecular differences, predominantly in DNA sequences, to gain information on an organism's evolutionary relationships. From these analyses, it is possible to determine ...