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BIOD 210 Module 5 Exam – Genetics Portage Learning – (2026) Actual Questions & Answers.

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BIOD 210 Module 5 Exam – Genetics Portage Learning – (2026) Actual Questions & Answers.

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BIOD 210 Module 5 Exam – Genetics Portage Learning – (2026) Actual Questions
& Answers

Table of Contents

Section Topic Area Questions

A Mendelian Genetics & Inheritance Patterns 1-25

B Linkage, Recombination & Gene Mapping 26-40

C Population Genetics & Hardy-Weinberg Equilibrium 41-55

D DNA Replication & Central Dogma 56-80

E Transcription & RNA Processing81-105

F Translation & The Genetic Code 106-125

G Gene Regulation (Operons & Epigenetics) 126-145

H Mutations & DNA Repair 146-160

I Genetic Technology & Applications 161-175

J Advanced Genetics Concepts 176-200

Section A: Mendelian Genetics & Inheritance Patterns

Question 1

In a dihybrid cross between two individuals heterozygous for two unlinked genes
(AaBb × AaBb), what is the probability of obtaining an offspring with the dominant
phenotype for both traits?

,A) 9/16

B) 3/16

C) 1/16

D) 1/4



Answer: A

Rationale: For each gene, the probability of the dominant phenotype is 3/4. Since
the genes are independent (unlinked), the combined probability is (3/4) × (3/4) =
9/16. This is the classic Mendelian ratio for a dihybrid cross .



Question 2

What is the expected phenotypic ratio from a cross between two individuals that
are both heterozygous for a single gene (Aa × Aa)?



A) 1:1

B) 3:1

C) 9:3:3:1

D) 1:2:1



Answer: B

,Rationale: A monohybrid cross between two heterozygotes yields a 3:1
phenotypic ratio, with three offspring showing the dominant trait for every one
showing the recessive trait. The genotypic ratio is 1:2:1 (AA:Aa:aa).



Question 3

In a pedigree for an autosomal recessive disorder, two unaffected parents have
an affected child. What is the probability that their next child will be a carrier
(unaffected but heterozygous)?



A) 1/4

B) 1/2

C) 2/3

D) 3/4



Answer: B

Rationale: Both unaffected parents must be carriers (Aa) to produce an affected
child (aa). From an Aa × Aa cross, the probability of a child being a carrier (Aa) is
1/2. The probability of being affected is 1/4, and homozygous dominant is 1/4 .



Question 4

, A man with hemophilia (an X-linked recessive disorder) marries a woman who is a
carrier. What is the probability that a son they have will be affected?



A) 1/4

B) 1/2

C) 3/4

D) 1



Answer: B

Rationale: The father passes his Y chromosome to sons, so sons inherit their only
X chromosome from their mother. The mother is a carrier (XᴴXʰ), so there is a 1/2
chance she will pass the Xʰ (hemophilia allele) to any son. All sons who receive Xʰ
will be affected .



Question 5

In a species of plant, flower color is determined by two genes. When both
dominant alleles are present (A_B_), purple color results. AaBb plants are self-
crossed. What is the expected phenotypic ratio?



A) 9 purple : 7 white

B) 9 purple : 3 red : 3 blue : 1 white

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