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  2. Pleiotropy - Wikipedia

    en.wikipedia.org/wiki/Pleiotropy

    One basic model of pleiotropy's origin describes a single gene locus to the expression of a certain trait. The locus affects the expressed trait only through changing the expression of other loci. Over time, that locus would affect two traits by interacting with a second locus.

  3. Genetic correlation - Wikipedia

    en.wikipedia.org/wiki/Genetic_correlation

    A genetic correlation of 0 implies that the genetic effects on one trait are independent of the other, while a correlation of 1 implies that all of the genetic influences on the two traits are identical. The bivariate genetic correlation can be generalized to inferring genetic latent variable factors across > 2 traits using factor analysis ...

  4. 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.

  5. Genetic variance - Wikipedia

    en.wikipedia.org/wiki/Genetic_variance

    Ronald Fisher in 1913. Genetic variance is a concept outlined by the English biologist and statistician Ronald Fisher in his fundamental theorem of natural selection.In his 1930 book The Genetical Theory of Natural Selection, Fisher postulates that the rate of change of biological fitness can be calculated by the genetic variance of the fitness itself. [1]

  6. Additive genetic effects - Wikipedia

    en.wikipedia.org/wiki/Additive_genetic_effects

    Genetic effects are broadly divided into two categories: additive and non-additive. Additive genetic effects occur where expression of more than one gene contributes to phenotype (or where alleles of a heterozygous gene both contribute), and the phenotypic expression of these gene(s) can be said to be the sum of these contributions.

  7. Complex traits - Wikipedia

    en.wikipedia.org/wiki/Complex_traits

    Meristic traits have phenotypes that are described by whole numbers. An example is the rate chickens lay eggs. A chicken can lay one, two, or five eggs a week, but never half an egg. [9] The environment can also impact expression, as chickens will not lay as many eggs depending on the time of year. [12]

  8. Adaptive value - Wikipedia

    en.wikipedia.org/wiki/Adaptive_value

    Adaptive value is an essential concept of population genetics. It represents usefulness of a trait that can help an organism to survive in its environment. This heritable trait that can help offspring to cope with the new surrounding or condition is a measurable quantity. [2]

  9. Genetic association - Wikipedia

    en.wikipedia.org/wiki/Genetic_association

    Genetic association is when one or more genotypes within a population co-occur with a phenotypic trait more often than would be expected by chance occurrence.. Studies of genetic association aim to test whether single-locus alleles or genotype frequencies or more generally, multilocus haplotype frequencies differ between two groups of individuals (usually diseased subjects and healthy controls).