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Test Bank for Genetics Essentials: Concepts and Connections, 5th Edition by Benjamin A. Pierce (Chapters 1–18)

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This document is the comprehensive test bank for "Genetics Essentials: Concepts and Connections," 5th Edition, authored by Benjamin A. Pierce. It contains a collection of examination questions—including multiple-choice and perhaps other question formats—covering all core chapters (1 through 18) of the textbook. The content addresses fundamental and advanced topics in genetics, such as Mendel's principles of heredity, chromosomes and cellular reproduction, DNA structure and replication, gene expression (transcription and translation), gene control, mutations, molecular genetic analysis, genomics, cancer genetics, and evolutionary genetics. It is a key resource for instructors and students preparing for assessments.

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Genetics Essentials
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December 13, 2025
Number of pages
405
Written in
2025/2026
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TEST BANK
Genetics Essentials: Concepts and Connections 5th Edition by
Benjamin A. Pierce




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,TABLE OF CONTENT

Chapter 01: Introduction to Genetics ....................................................................................................................... 3
Chapter 02: Chromosomes and Cellular Reproduction .......................................................................................... 15
Chapter 03: Basic Principles of Heredity ............................................................................................................... 32
Chapter 04: Extensions and Modifications of Basic Principles ............................................................................. 59
Chapter 05: Linkage, Recombination, and Eukaryotic Gene Mapping ................................................................. 98
Chapter 06: Chromosome Variation .................................................................................................................... 115
Chapter 07: Bacterial and Viral Genetic Systems ................................................................................................ 139
Chapter 08 DNA: The Chemical Nature of the Gene .......................................................................................... 152
Chapter 09: DNA Replication and Recombination .............................................................................................. 181
Chapter 10: From DNA to Proteins: Transcription and RNA Processing ........................................................... 198
Chapter 11: From DNA to Proteins: Translation ................................................................................................. 224
Chapter 12: Control of Gene Expression ............................................................................................................. 244
Chapter 13: Gene Mutations, Transposable Elements, and DNA Repair ............................................................ 278
Chapter 14: Molecular Genetic Analysis and Biotechnology .............................................................................. 298
Chapter 15: Genomics and Proteomics ................................................................................................................ 314
Chapter 16: Cancer Genetics ................................................................................................................................ 332
Chapter 17: Quantitative Genetics ....................................................................................................................... 346
Chapter 18: Population and Evolutionary Genetics ............................................................................................. 366




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,Chapter 01: Introduction to Genetics
1. Albinism is rare in most human populations, occurring at a frequency of about 1 in 20,000 people. However,
the trait occurs at a frequency of 1 in 200 in certain Hopi villages of Black Mesa in Arizona. Explain in terms of
natural selection why albinism is so rare in most human populations.
CORRECT ANSWER : In most populations, there is fairly strong selection against albinism because albinos don’t
produce melanin, causing their skin cells not to be protected from the damaging effects of sunlight.
Also, the lack of melanin in their eyes causes them to have poor eyesight. Finally, in most cultures
albinos are seen as abnormal, and they are not normally sought out for marriage and mating.
Therefore, in most populations the alleles that cause albinism are selected against, and they decrease
in frequency or are kept at a low level, causing the recessive trait to be rare.

2. Albinism is rare in most human populations, occurring at a frequency of about 1 in 20,000 people. However,
the trait occurs at a frequency of 1 in 200 in certain Hopi villages of Black Mesa in Arizona. Explain in terms of
natural selection why the trait is so much more common among the Hopis of Black Mesa.
CORRECT ANSWER : Albinos occupy a privileged position among the Hopis of Black Mesa. In this culture,
albinos are viewed as especially pretty, clean, and intelligent, and they often occupy positions of
leadership. Albinos are celebrated in the villages as a sign of purity of Hopi blood in the
community.
Furthermore, albinos are often excused from normal male field labor because of their sensitivity to
sunlight, causing them to be left behind in the village with the women during the daytime. This
allows them extra mating opportunities compared to the other men of the village. Therefore, the
alleles that cause albinism are either selected for in this culture or at least not selected against as
strongly as in other cultures, allowing the trait to occur at a much higher frequency.

3. Which one of the following pairings between the subdiscipline of genetics and the phenomenon is
INCORRECT?
a. evolution—population genetics
b. gene regulation—molecular genetics
c. allelic frequency alteration—population genetics
d. arrangement of genes on chromosome—transmission genetics
e. chemical nature of the gene—transmission genetics
CORRECT ANSWER : e


4. Which one of the following topics of research belongs to the discipline of transmission genetics?
a. inheritance pattern of gene alleles
b. mechanism of DNA replication
c. gene expression patterns
d. evolution
e. chemical modification of nucleic acids
CORRECT ANSWER : a


5. The complete genetic makeup of an organism is referred to as its
a. chromosome.
b. alleles.
c. locus.

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, d. genome.
e. phenotype.
CORRECT ANSWER : d


6. Identify a TRUE statement from the following descriptions concerning genetics.
a. The theory of pangenesis states that all living organisms are composed of cells.
b. Bacteria and viruses are not useful in studying genes and inheritance because they are structurally
and metabolically different from eukaryotic cells.
c. Charles Darwin accurately described the laws of inheritance in his landmark book, On the Origin of
Species.
d. Many human traits, such as skin and hair color, are determined by more than a single gene.
e. Evolution can occur without genetic changes in the population.
CORRECT ANSWER : d


7. Identify a FALSE statement from the following descriptions of genetics.
a. Humans first applied genetics to the domestication of plants and animals between approximately
10,000 and 12,000 years ago.
b. Some viruses use RNA to carry their genetic information.
c. Albinism results from a mutation in the genes that control the synthesis and storage of melanin.
d. All human traits that display blending inheritance are affected by a single gene.
e. The process by which genetic information is copied and decoded is similar for all forms of life.
CORRECT ANSWER : d


8. Which of the following species is considered a model genetic organism?
a. the plant Linaria vulgaris
b. the deer mouse Peromyscus maniculatus
c. the worm Caenorhabditis elegans
d. the frog Hyla chrysoscelis
e. the chimpanzee Pan troglodytes
CORRECT ANSWER : c


9. Which of the following would serve the LEAST well as a model for understanding basic mechanisms of
inheritance?
a. fruit flies
b. humans
c. yeast
d. mice
e. zebrafish
CORRECT ANSWER : b


10. Which of the following statements is TRUE?
a. Each subdiscipline of genetics is very specific as to what is explored and does not overlap with the



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