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  2. Founder effect - Wikipedia

    en.wikipedia.org/wiki/Founder_effect

    Founder effect: The original population (left) could give rise to different founder populations (right). In population genetics, the founder effect is the loss of genetic variation that occurs when a new population is established by a very small number of individuals from a larger population. It was first fully outlined by Ernst Mayr in 1942 ...

  3. Peripatric speciation - Wikipedia

    en.wikipedia.org/wiki/Peripatric_speciation

    The founder effect is based on models that suggest peripatric speciation can occur by the interaction of selection and genetic drift, [1]: 106 which may play a significant role. [7] Mayr first conceived of the idea by his observations of kingfisher populations in New Guinea and its surrounding islands.

  4. Genetic drift - Wikipedia

    en.wikipedia.org/wiki/Genetic_drift

    The founder effect is a special case of a population bottleneck, occurring when a small group in a population splinters off from the original population and forms a new one. The random sample of alleles in the just formed new colony is expected to grossly misrepresent the original population in at least some respects. [44]

  5. Introduction to evolution - Wikipedia

    en.wikipedia.org/wiki/Introduction_to_evolution

    One example of the founder effect is found in the Amish migration to Pennsylvania in 1744. Two of the founders of the colony in Pennsylvania carried the recessive allele for Ellis–van Creveld syndrome. Because the Amish tend to be religious isolates, they interbreed, and through generations of this practice the frequency of Ellis–van ...

  6. Speciation - Wikipedia

    en.wikipedia.org/wiki/Speciation

    Speciation is the evolutionary process by which populations evolve to become distinct species. The biologist Orator F. Cook coined the term in 1906 for cladogenesis, the splitting of lineages, as opposed to anagenesis, phyletic evolution within lineages. [1][2][3] Charles Darwin was the first to describe the role of natural selection in ...

  7. Inbreeding - Wikipedia

    en.wikipedia.org/wiki/Inbreeding

    With 20 generations of sibling matings, homozygosity is occurring at roughly 98.7% of all loci in the genome, allowing for these offspring to serve as animal models for genetic studies. [65] The use of inbred strains is also important for genetic studies in animal models, for example to distinguish genetic from environmental effects.

  8. Bergmann's rule - Wikipedia

    en.wikipedia.org/wiki/Bergmann's_rule

    Bergmann's rule - Penguins on the Earth (mass m, height h) [1] Bergmann's rule is an ecogeographical rule that states that, within a broadly distributed taxonomic clade, populations and species of larger size are found in colder environments, while populations and species of smaller size are found in warmer regions.

  9. Laboratory experiments of speciation - Wikipedia

    en.wikipedia.org/wiki/Laboratory_experiments_of...

    A simplification of an allopatric speciation experiment where two lines of fruit flies are raised on maltose and starch media. Laboratory experiments of speciation have been conducted for all four modes of speciation: allopatric, peripatric, parapatric, and sympatric; and various other processes involving speciation: hybridization, reinforcement, founder effects, among others.