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  2. Minimum viable population - Wikipedia

    en.wikipedia.org/wiki/Minimum_viable_population

    Inbreeding in a population reduces fitness by causing deleterious recessive alleles to become more common in the population, and also by reducing adaptive potential. The so-called "50/500 rule", where a population needs 50 individuals to prevent inbreeding depression, and 500 individuals to guard against genetic drift at-large, is an oft-used ...

  3. Inbreeding avoidance - Wikipedia

    en.wikipedia.org/wiki/Inbreeding_avoidance

    Inbreeding can result in inbreeding depression, which is the reduction of fitness of a given population due to inbreeding. Inbreeding depression occurs via appearance of disadvantageous traits due to the pairing of deleterious recessive alleles in a mating pair's progeny . [ 5 ]

  4. Population bottleneck - Wikipedia

    en.wikipedia.org/wiki/Population_bottleneck

    In conservation biology, minimum viable population (MVP) size helps to determine the effective population size when a population is at risk for extinction. [5] [6] The effects of a population bottleneck often depend on the number of individuals remaining after the bottleneck and how that compares to the minimum viable population size.

  5. Genetic viability - Wikipedia

    en.wikipedia.org/wiki/Genetic_viability

    The precise effective population size can be calculated using a minimum viable population analysis. [7] Higher genetic diversity and a larger population size will decrease the negative effects of genetic drift and inbreeding in a population. [3] When adequate measures have been met, the genetic viability of a population will increase. [8]

  6. Inbreeding - Wikipedia

    en.wikipedia.org/wiki/Inbreeding

    Animals avoid inbreeding only rarely. [2] Inbreeding results in homozygosity which can increase the chances of offspring being affected by recessive traits. [3] In extreme cases, this usually leads to at least temporarily decreased biological fitness of a population [4] [5] (called inbreeding depression), which is its ability to survive and ...

  7. Major histocompatibility complex and sexual selection

    en.wikipedia.org/wiki/Major_histocompatibility...

    The hypothesis states that inbreeding increases the amount of overall homozygosity—not just locally in the MHC, so an increase in genetic homozygosity may be accompanied not only by the expression of recessive diseases and mutations, but by the loss of any potential heterozygote advantage as well. [17] [2] Animals only rarely avoid inbreeding ...

  8. Viability - Wikipedia

    en.wikipedia.org/wiki/Viability

    Genetic viability, chance of a population of plants or animals to avoid the problems of inbreeding; Minimum viable population, a lower bound on the population of a species, such that it can survive in the wild; Population viability analysis, a species-specific method of risk assessment frequently used in conservation biology

  9. Genetic purging - Wikipedia

    en.wikipedia.org/wiki/Genetic_purging

    Genetic purging is the increased pressure of natural selection against deleterious alleles prompted by inbreeding. [1]Purging occurs because deleterious alleles tend to be recessive, which means that they only express all their harmful effects when they are present in the two copies of the individual (i.e., in homozygosis).