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  2. Stabilizing selection - Wikipedia

    en.wikipedia.org/wiki/Stabilizing_selection

    Stabilizing selection (not to be confused with negative or purifying selection [1] [2]) is a type of natural selection in which the population mean stabilizes on a particular non-extreme trait value. This is thought to be the most common mechanism of action for natural selection because most traits do not appear to change drastically over time ...

  3. Directional selection - Wikipedia

    en.wikipedia.org/wiki/Directional_selection

    Middle (Graph 2) represents stabilizing selection with the moderate trait favored. Bottom (Graph 3) represents disruptive selection with both extremes being favored. In population genetics , directional selection is a type of natural selection in which one extreme phenotype is favored over both the other extreme and moderate phenotypes.

  4. Category:Selection - Wikipedia

    en.wikipedia.org/wiki/Category:Selection

    Selection is an important process in evolution and can take many forms. ... De novo domestication; ... Stabilizing selection; Supercow (dairy)

  5. Simp - Wikipedia

    en.wikipedia.org/wiki/Simp

    Simp (/ s ɪ m p / ⓘ) is an internet slang term describing someone who shows excessive sympathy and attention toward another person, typically to someone who does not reciprocate the same feelings, in pursuit of affection or a sexual relationship.

  6. Biological constraints - Wikipedia

    en.wikipedia.org/wiki/Biological_constraints

    Biological constraints are factors which make populations resistant to evolutionary change. One proposed definition of constraint is "A property of a trait that, although possibly adaptive in the environment in which it originally evolved, acts to place limits on the production of new phenotypic variants."

  7. Selection gradient - Wikipedia

    en.wikipedia.org/wiki/Selection_gradient

    The first and most common function to estimate fitness of a trait is linear ω =α +βz, which represents directional selection. [1] [10] The slope of the linear regression line (β) is the selection gradient, ω is the fitness of a trait value z, and α is the y-intercept of the fitness function.

  8. Frequency-dependent selection - Wikipedia

    en.wikipedia.org/wiki/Frequency-dependent_selection

    In negative frequency-dependent selection, the fitness of a phenotype or genotype decreases as it becomes more common. This is an example of balancing selection. More generally, frequency-dependent selection includes when biological interactions make an individual's fitness depend on the frequencies of other phenotypes or genotypes in the ...

  9. Talk:Stabilizing selection - Wikipedia

    en.wikipedia.org/wiki/Talk:Stabilizing_selection

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