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Multiple Choice
In the equation for Hardy-Weinberg equilibrium, 1 represents __________.
A
the frequency of heterozygous individuals in the populations
B
the frequency of homozygous recessive individuals in the population
C
all the possible phenotypes in the population
D
the frequency of homozygous dominant individuals in the population
E
the sum of the frequencies of the genotypes for a particular gene locus
Verified step by step guidance
1
Understand that the Hardy-Weinberg equilibrium is a principle that describes the genetic variation in a population under ideal conditions.
The equation for Hardy-Weinberg equilibrium is expressed as: \( p^2 + 2pq + q^2 = 1 \), where \( p \) and \( q \) represent the frequencies of two alleles at a locus.
In this equation, \( p^2 \) represents the frequency of homozygous dominant individuals, \( 2pq \) represents the frequency of heterozygous individuals, and \( q^2 \) represents the frequency of homozygous recessive individuals.
The number 1 in the equation represents the total sum of all genotype frequencies in the population, meaning it accounts for all possible genotypes at a particular gene locus.
Thus, the correct interpretation of 1 in the Hardy-Weinberg equation is that it represents the sum of the frequencies of the genotypes for a particular gene locus, ensuring that all possible genotypes are considered.