Hardy-Weinberg idea notes

The Hardy-Weinberg principle explains how allele frequencies remain constant in a population under certain conditions, providing a foundation for understanding genetic equilibrium.

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What is the Hardy-Weinberg principle?

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A mathematical model that predicts allele frequencies in a population will remain constant from generation to generation in the absence of evolutionary influences.

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1. Which of the following is NOT an assumption of Hardy-Weinberg?

Termen in deze set(15)

What is the Hardy-Weinberg principle?

A mathematical model that predicts allele frequencies in a population will remain constant from generation to generation in the absence of evolutionary influences.

Assumptions of Hardy-Weinberg

1. No mutations 2. No gene flow 3. Random mating 4. Large population size 5. No natural selection

True or false: Mutations affect Hardy-Weinberg equilibrium.

True, because mutations introduce new alleles and can change allele frequencies.

What does p represent?

The frequency of the dominant allele in a population.

What does q represent?

The frequency of the recessive allele in a population.

Fill the blank: p + q = ____.

1, representing the total frequency of all alleles in a population.

Difference between allele frequency and genotype frequency?

Allele frequency refers to how common an allele is in a population, whereas genotype frequency refers to how common particular combinations of alleles are.

What is genetic drift?

A mechanism of evolution that causes allele frequencies to change due to random sampling in small populations.

True or false: Natural selection is assumed in Hardy-Weinberg.

False, because natural selection alters allele frequencies, violating the principle.

How does gene flow affect Hardy-Weinberg?

Gene flow introduces new alleles into a population, changing allele frequencies.

What is the equation for genotype frequencies?

For two alleles A and a: p2+2pq+q2=1\displaystyle p^2 + 2pq + q^2 = 1, where p2\displaystyle p^2 is homozygous dominant, 2pq\displaystyle 2pq is heterozygous, and q2\displaystyle q^2 is homozygous recessive.

Application of Hardy-Weinberg?

Used to predict genetic variation and to assess whether a population is evolving over time.

Which factor disrupts Hardy-Weinberg equilibrium?

Natural selection, because it favors certain alleles over others, changing allele frequencies.

What is random mating?

When individuals pair by chance, not based on their genotypes or phenotypes.

Fill the blank: In a population with 70% dominant allele A, p = ___.

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Vragen in deze set(12)

1. Which of the following is NOT an assumption of Hardy-Weinberg?

A.A) No mutations
B.B) Small population
C.C) Random mating
D.D) No selection

2. What does the equation p^2 + 2pq + q^2 = 1 represent?

A.A) Population size
B.B) Genotype frequencies
C.C) Allele frequencies
D.D) Mutation rates

3. If p = 0.6, what is q?

A.A) 0.4
B.B) 0.6
C.C) 1.0
D.D) 0.2

4. Which scenario might violate Hardy-Weinberg equilibrium?

A.A) Random mating
B.B) Large population size
C.C) Limited migration
D.D) High mutation rate

5. How does genetic drift affect allele frequencies?

A.A) Stabilizes them
B.B) Randomly changes them
C.C) Increases them
D.D) Decreases population size

6. True or false: Gene flow can help maintain Hardy-Weinberg equilibrium.

A.A) True
B.B) False
C.C) Only in large populations
D.D) Only in small populations

7. If a population is evolving, it indicates that:

A.A) Allele frequencies are changing
B.B) Mutations are absent
C.C) Population size is decreasing
D.D) Mating is random

8. Which best describes an example of natural selection?

A.A) All individuals survive equally
B.B) Some traits confer survival advantages
C.C) Random mating occurs
D.D) No mutations happen

9. What is the primary focus of the Hardy-Weinberg principle?

A.A) Evolution mechanisms
B.B) Genetic drift
C.C) Population stability
D.D) Mutational changes

10. True or false: In a very small population, Hardy-Weinberg holds true.

A.A) True
B.B) False
C.C) Only with random mating
D.D) Only with no selection

11. Which scenario promotes genetic variation?

A.A) Random mating
B.B) Natural selection
C.C) Gene flow
D.D) Genetic drift

12. Fill the blank: Hardy-Weinberg is often used in ____ to understand genetic variation.

A.A) Medicine
B.B) Agriculture
C.C) Wildlife conservation
D.D) All of the above

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