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  2. Genetic variation - Wikipedia

    en.wikipedia.org/wiki/Genetic_variation

    Genetic variation can be identified at many levels. Identifying genetic variation is possible from observations of phenotypic variation in either quantitative traits (traits that vary continuously and are coded for by many genes, e.g., leg length in dogs) or discrete traits (traits that fall into discrete categories and are coded for by one or a few genes, e.g., white, pink, or red petal color ...

  3. Genetic variability - Wikipedia

    en.wikipedia.org/wiki/Genetic_variability

    Genetic variability is either the presence of, or the generation of, genetic differences. It is defined as "the formation of individuals differing in genotype , or the presence of genotypically different individuals, in contrast to environmentally induced differences which, as a rule, cause only temporary, nonheritable changes of the phenotype ."

  4. Genetic variance - Wikipedia

    en.wikipedia.org/wiki/Genetic_variance

    Genetic variance has three major components: the additive genetic variance, dominance variance, and epistatic variance. [3] Additive genetic variance involves the inheritance of a particular allele from your parent and this allele's independent effect on the specific phenotype, which will cause the phenotype deviation from the mean phenotype.

  5. Human genetic variation - Wikipedia

    en.wikipedia.org/wiki/Human_genetic_variation

    Human genetic variation is the genetic differences in and among ... Epigenetic variation is variation in the chemical tags that attach to DNA and affect how genes get ...

  6. Human variability - Wikipedia

    en.wikipedia.org/wiki/Human_variability

    This is an example of how disease can affect human variation. Another disease that can affect human variation is syphilis, a sexual transmitted disease. Syphilis does not affect human variation until the middle stage of the disease. It then starts to grow rashes all over the body, affecting people's human variation.

  7. Gene–environment interaction - Wikipedia

    en.wikipedia.org/wiki/Gene–environment_interaction

    Gene–environment interaction (or genotype–environment interaction or G×E) is when two different genotypes respond to environmental variation in different ways. A norm of reaction is a graph that shows the relationship between genes and environmental factors when phenotypic differences are continuous. [ 1 ]

  8. Heritability - Wikipedia

    en.wikipedia.org/wiki/Heritability

    Heritability increases when genetics are contributing more variation or because non-genetic factors are contributing less variation; what matters is the relative contribution. Heritability is specific to a particular population in a particular environment.

  9. Genetic diversity - Wikipedia

    en.wikipedia.org/wiki/Genetic_diversity

    A mutation will increase genetic diversity in the short term, as a new gene is introduced to the gene pool. However, the persistence of this gene is dependent of drift and selection (see above). Most new mutations either have a neutral or negative effect on fitness, while some have a positive effect. [ 11 ]