Related Experiment Video
Updated: Jul 31, 2025

10:20
Simultaneous Assessment of Kinship, Division Number, and Phenotype via Flow Cytometry for Hematopoietic Stem and Progenitor Cells
Published on: March 24, 2023
1.6K
Stable populations and Hardy-Weinberg equilibrium
Alan E Stark1,2
1School of Mathematics and Statistics FO7, The University of Sydney, Sydney, NSW, 2006, Australia. alans@exemail.com.au.
Hereditas
|May 5, 2023
Summary
This study reveals conditions for maintaining Hardy-Weinberg proportions despite non-random mating at an autosomal locus with five alleles. It challenges the assumption of random mating in population genetics.
Area of Science:
- Population genetics
- Mathematical biology
- Evolutionary genetics
Background:
- Hardy-Weinberg equilibrium is a foundational concept in population genetics.
- It typically assumes random mating, which is often unrealistic in natural populations.
- Understanding deviations from equilibrium is crucial for studying evolutionary processes.
More Related Videos
Related Concept Videos
Hardy-Weinberg Principle
72.5K
Diploid organisms have two alleles of each gene, one from each parent, in their somatic cells. Therefore, each individual contributes two alleles to the gene pool of the population. The gene pool of a population is the sum of every allele of all genes within that population and has some degree of variation. Genetic variation is typically expressed as a relative frequency, which is the percentage of the total population that has a given allele, genotype or phenotype.
72.5K
Mutation, Gene Flow, and Genetic Drift
58.8K
In a population that is not at Hardy-Weinberg equilibrium, the frequency of alleles changes over time. Therefore, any deviations from the five conditions of Hardy-Weinberg equilibrium can alter the genetic variation of a given population. Conditions that change the genetic variability of a population include mutations, natural selection, non-random mating, gene flow, and genetic drift (small population size).
58.8K
Conservation of Small Populations
13.2K
Small population sizes put a species at extreme risk of extinction due to a lack of variation, and a consequent decrease in adaptability. This weakens the chances of survival under pressures such as climate change, competition from other species, or new diseases. Large populations are more likely to survive pressures such as these, as such populations are more likely to harbor individuals that have genetic variants that are adaptive under new stresses. Small populations are much less...
13.2K
What is Population Genetics?
58.6K
A population is composed of members of the same species that simultaneously live and interact in the same area. When individuals in a population breed, they pass down their genes to their offspring. Many of these genes are polymorphic, meaning that they occur in multiple variants. Such variations of a gene are referred to as alleles. The collective set of all the alleles within a population is known as the gene pool.
58.6K
Conservation of Declining Populations
9.7K
Conservation of declining population focuses on ways of detecting, diagnosing, and halting a population decline. The approach uses methods to prevent populations from going extinct.
9.7K
Genetic Drift
40.1K
Natural selection—probably the most well-known evolutionary mechanism—increases the prevalence of traits that enhance survival and reproduction. However, evolution does not merely propagate favorable traits, nor does it always benefit populations.
40.1K

