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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. 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.

  4. Genetic linkage - Wikipedia

    en.wikipedia.org/wiki/Genetic_linkage

    Genetic linkage is the tendency of DNA sequences that are close together on a chromosome to be inherited together during the meiosis phase of sexual reproduction.Two genetic markers that are physically near to each other are unlikely to be separated onto different chromatids during chromosomal crossover, and are therefore said to be more linked than markers that are far apart.

  5. Centimorgan - Wikipedia

    en.wikipedia.org/wiki/Centimorgan

    In genetics, a centimorgan (abbreviated cM) or map unit (m.u.) is a unit for measuring genetic linkage. It is defined as the distance between chromosome positions (also termed loci or markers) for which the expected average number of intervening chromosomal crossovers in a single generation is 0.01. It is often used to infer distance along a ...

  6. Genetic map function - Wikipedia

    en.wikipedia.org/wiki/Genetic_map_function

    Where d is the distance in map units, the Morgan Mapping Function states that the recombination frequency r can be expressed as =.This assumes that one crossover occurs, at most, in an interval between two loci, and that the probability of the occurrence of this crossover is proportional to the map length of the interval.

  7. Complete linkage - Wikipedia

    en.wikipedia.org/wiki/Complete_linkage

    During the process of meiosis, homologous chromosomes pair up, and can exchange corresponding sections of DNA. As a result, genes that were originally on the same chromosome can finish up on different chromosomes. This process is known as genetic recombination. The rate of recombination of two discrete loci corresponds to their physical proximity.

  8. Human evolutionary genetics - Wikipedia

    en.wikipedia.org/wiki/Human_evolutionary_genetics

    Distance on a phylogenetic tree can be used approximately to indicate: Genetic distance. The genetic difference between humans and chimpanzees is less than 2%, [4] or three times larger than the variation among modern humans (estimated at 0.6%). [5] Temporal remoteness of the most recent common ancestor.

  9. Genetic recombination - Wikipedia

    en.wikipedia.org/wiki/Genetic_recombination

    It is the frequency of crossing over between two linked gene loci , and depends on the distance between the genetic loci observed. For any fixed set of genetic and environmental conditions, recombination in a particular region of a linkage structure ( chromosome ) tends to be constant, and the same is then true for the crossing-over value which ...