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  2. Inbreeding depression - Wikipedia

    en.wikipedia.org/wiki/Inbreeding_depression

    Inbreeding depression in Delphinium nelsonii. A. Overall fitness of progeny cohorts and the B. progeny lifespan were all lower when progeny were the result of crosses with pollen taken close to a receptor plant. [1] Inbreeding depression is the reduced biological fitness that has the potential to result from inbreeding, the breeding of related ...

  3. Heterosis - Wikipedia

    en.wikipedia.org/wiki/Heterosis

    Heterosis is often discussed as the opposite of inbreeding depression, although differences in these two concepts can be seen in evolutionary considerations such as the role of genetic variation or the effects of genetic drift in small populations on these concepts.

  4. Inbreeding - Wikipedia

    en.wikipedia.org/wiki/Inbreeding

    In plant breeding, inbred lines are used as stocks for the creation of hybrid lines to make use of the effects of heterosis. Inbreeding in plants also occurs naturally in the form of self-pollination. Inbreeding can significantly influence gene expression which can prevent inbreeding depression. [13]

  5. Outbreeding depression - Wikipedia

    en.wikipedia.org/wiki/Outbreeding_depression

    In biology, outbreeding depression happens when crosses between two genetically distant groups or populations result in a reduction of fitness. [1] The concept is in contrast to inbreeding depression , although the two effects can occur simultaneously on different traits. [ 2 ]

  6. Inbreeding avoidance - Wikipedia

    en.wikipedia.org/wiki/Inbreeding_avoidance

    A review of the genetics of inbreeding depression in wild animal and plant populations, as well as in humans, led to the conclusion that inbreeding depression and its opposite, heterosis (hybrid vigor), are predominantly caused by the presence of recessive deleterious alleles in populations. [7]

  7. Heterozygote advantage - Wikipedia

    en.wikipedia.org/wiki/Heterozygote_advantage

    Previous research, comparing measures of dominance, overdominance and epistasis (mostly in plants), found that the majority of cases of heterozygote advantage were due to complementation (or dominance), the masking of deleterious recessive alleles by wild-type alleles, as discussed in the articles Heterosis and Complementation (genetics), but ...

  8. Genetic load - Wikipedia

    en.wikipedia.org/wiki/Genetic_load

    In the short run, an increase in inbreeding increases the probability with which offspring get two copies of a recessive deleterious alleles, lowering fitnesses via inbreeding depression. [22] In a species that habitually inbreeds, e.g. through self-fertilization , a proportion of recessive deleterious alleles can be purged .

  9. Biology of depression - Wikipedia

    en.wikipedia.org/wiki/Biology_of_depression

    Physical illnesses, including hypothyroidism and mitochondrial disease, can also trigger depressive symptoms. [4] [5] Neural circuits implicated in depression include those involved in the generation and regulation of emotion, as well as in reward. Abnormalities are commonly found in the lateral prefrontal cortex whose putative function is ...