Question:

The factor that leads to the Founder effect in a population is

Updated On: Nov 13, 2025
  • Genetic drift

  • Natural selection

  • Genetic recombination

  • Mutation

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The Correct Option is A

Solution and Explanation

The Founder effect is primarily a result of genetic drift. Let's understand the concept step-by-step:

  1. Definition: The Founder effect occurs when a new population is established by a very small number of individuals from a larger population. This small group may carry only a subset of the genetic diversity of the original population.
  2. Genetic Drift: Genetic drift refers to the random changes in allele frequencies in a population. It is more significant in small populations, like those in a Founder effect scenario. These random fluctuations can lead to the prevalence of certain alleles simply by chance.
  3. Founder Effect Mechanism: When a small group splits off from a larger population to form a new one, the alleles carried by these "founders" may not represent those of the original population. This can result in a new population that is genetically distinct from the original due to this sampling error, primarily due to genetic drift.
  4. Exclusion of Other Options:
    • Natural Selection: It involves the differential survival and reproduction of individuals due to differences in phenotype. It is not a random process like genetic drift.
    • Genetic Recombination: It involves the exchange of genetic material between different chromosomes during meiosis. It increases genetic diversity but does not lead directly to the Founder effect.
    • Mutation: This introduces new genetic variations but does not account for the allele frequency changes seen in the Founder effect.
  5. Conclusion: Therefore, the correct answer is Genetic drift as it is the principal factor behind the Founder effect.

Understanding the Founder effect is crucial in population genetics and helps explain how new species might arise with distinct genetic traits.

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Concepts Used:

Evolution

Evolution is a process that occurs in changes in the genetic content of a population over time. Evolutionary change is generally classified into two: microevolution and macroevolution. The process of changes in allele frequencies in a population over time is a microevolutionary process. Three main mechanisms that cause allele frequency change are natural selection, genetic drift, and gene flow. On the other hand, macroevolution refers to change at or above the level of the species.