File:Drosophila_Gene_Linkage_Map.svg · Wikimedia Commons · See Wikimedia Commons
genetic linkage
Sign in to savetendency of DNA sequences that are close together on a chromosome to be inherited together
Research
93,873 papers- Construction of a genetic linkage map in man using restriction fragment length polymorphisms.American journal of human genetics · 1980
- Genetic linkage studies.Lancet (London, England) · 2005
- Genetic linkage and hemochromatosis.The New England journal of medicine · 1979
- Genetic linkage mapping in fungi: current state, applications, and future trends.Applied microbiology and biotechnology · 2012
- Genetic linkage and molecular evolution.Current biology : CB · 2001
via PubMed
~20 min read
Encyclopedic overview
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. In other words, the nearer two genes are on a chromosome, the lower the chance of recombination between them, and the more likely they are to be inherited together. Markers on different chromosomes are perfectly unlinked, although the penetrance of potentially deleterious alleles may be influenced by the presence of other alleles, and these other alleles may be located on other chromosomes than that on which a particular potentially deleterious allele is located.
Genetic linkage is the most prominent exception to Gregor Mendel's Law of Independent Assortment. The first experiment to demonstrate linkage was carried out in 1905. At the time, the reason why certain traits tend to be inherited together was unknown. Later work revealed that genes are physical structures related by physical distance.
Excerpted from Wikipedia’s “genetic linkage” article, available under the CC BY-SA 4.0 licence.