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Campbell Biology

Jane B. Reece, Lisa A. Urry, Michael L. Cain, Steven A. Wasserman, Peter V. Minorsky, Robert B. Jackson

Chapter 18

Regulation of Gene Expression - all with Video Answers

Educators

+ 3 more educators

Chapter Questions

04:01

Problem 1

If a particular operon encodes enzymes for making an essential amino acid and is regulated like the trp operon, then
a. the amino acid inactivates the repressor.
b. the repressor is active in the absence of the amino acid.
c. the amino acid acts as a corepressor.
d. the amino acid turns on transcription of the operon.

Alyssa Mcalarney
Alyssa Mcalarney
Numerade Educator
02:03

Problem 2

Muscle cells differ from nerve cells mainly because they
a. express different genes.
b. contain different genes.
c. use different genetic codes.
d. have unique ribosomes.

Angie Munoz
Angie Munoz
Numerade Educator
01:43

Problem 3

The functioning of enhancers is an example of
a. a eukaryotic equivalent of prokaryotic promoter functioning.
b. transcriptional control of gene expression.
c. the stimulation of translation by initiation factors.
d. post-translational control that activates certain proteins.

Courtney Burson
Courtney Burson
Numerade Educator
06:00

Problem 4

Cell differentiation always involves
a. transcription of the myoD gene.
b. the movement of cells.
c. the production of tissue-specific proteins.
d. the selective loss of certain genes from the genome.

AD
Anastasia Dulskiy
Numerade Educator
03:29

Problem 5

Which of the following is an example of post-transcriptional control of gene expression?
a. the addition of methyl groups to cytosine bases of DNA
b. the binding of transcription factors to a promoter
c. the removal of introns and alternative splicing of exons
d. gene amplification contributing to cancer

MR
Michael Richmond
Numerade Educator
03:12

Problem 6

What would occur if the repressor of an inducible operon were mutated so it could not bind the operator?
a. irreversible binding of the repressor to the promoter
b. reduced transcription of the operon's genes
c. buildup of a substrate for the pathway controlled by the operon
d. continuous transcription of the operon's genes

Caroline Jones
Caroline Jones
Numerade Educator
02:52

Problem 7

Absence of bicoid mRNA from a Drosophila egg leads to the absence of anterior larval body parts and mirror-image duplication of posterior parts. This is evidence that the product of the bicoid gene
a. normally leads to formation of head structures.
b. normally leads to formation of tail structures.
c. is transcribed in the early embryo.
d. is a protein present in all head structures.

MR
Michael Richmond
Numerade Educator
00:48

Problem 8

Which of the following statements about the DNA in one of your brain cells is true?
a. Most of the DNA codes for protein.
b. The majority of genes are likely to be transcribed.
c. It is the same as the DNA in one of your liver cells.
d. Each gene lies immediately adjacent to an enhancer.

Shazia Naz
Shazia Naz
Numerade Educator
02:07

Problem 9

Within a cell, the amount of protein made using a given mRNA molecule depends partly on
a. the degree of DNA methylation.
b. the rate at which the mRNA is degraded.
c. the number of introns present in the mRNA.
d. the types of ribosomes present in the cytoplasm.

Bryan Lynn
Bryan Lynn
Numerade Educator
01:21

Problem 10

Proto-oncogenes can change into oncogenes that cause cancer. Which of the following best explains the presence of these potential time bombs in eukaryotic cells?
a. Proto-oncogenes first arose from viral infections.
b. Proto-oncogenes are mutant versions of normal genes.
c. Proto-oncogenes are genetic "junk."
d. Proto-oncogenes normally help regulate cell division.

Alyssa Mcalarney
Alyssa Mcalarney
Numerade Educator
05:48

Problem 11

The diagram below shows five genes, including their enhancers, from the genome of a certain species. Imagine that orange, blue, green, black, red, and purple activator proteins exist that can bind to the appropriately color-coded control elements in the enhancers of these genes.
(a) Draw an $X$ above enhancer elements (of all the genes) that would have activators bound in a cell in which only gene 5 is transcribed. Which colored activators would be present?
(b) Draw a dot above all enhancer elements that would have activators bound in a cell in which the green, blue, and orange activators are present. Which gene(s) would be transcribed?
(c) Imagine that genes $1,2,$ and 4 code for nerve-specific proteins, and genes 3 and 5 are skin specific. Which activators would have to be present in each cell type to ensure transcription of the appropriate genes?

Eric Tran
Eric Tran
Numerade Educator
01:37

Problem 12

DNA sequences can act as "tape measures of evolution" (see Chapter 5). Scientists analyzing the human genome sequence were surprised to find that some of the regions of the human genome that are most highly conserved (similar to comparable regions in other species) don't code for proteins. Propose a possible explanation for this observation.

Alexander Cheng
Alexander Cheng
Numerade Educator
05:01

Problem 13

Prostate cells usually require testosterone and other androgens to survive. But some prostate cancer cells thrive despite treatments that eliminate androgens. One hypothesis is that estrogen, often considered a female hormone, may be activating genes normally controlled by an androgen in these cancer cells. Describe one or more experiments to test this hypothesis. (See Figure 11.9 to review the action of these steroid hormones.)

Jessica Honkomp
Jessica Honkomp
Numerade Educator
06:03

Problem 14

Trace amounts of dioxin were present in Agent Orange, a defoliant sprayed on vegetation during the Vietnam War. Animal tests suggest that dioxin can cause birth defects, cancer, liver and thymus damage, and immune system suppression, sometimes leading to death. But the animal tests are equivocal; a hamster is not affected by a dose that can kill a guinea pig. Dioxin acts like a steroid hormone, entering a cell and binding to a cytoplasmic receptor that then binds the cell's DNA. How might this mechanism help explain the variety of dioxin's effects on different body systems and in different animals? How might you determine whether a type of illness is related to dioxin exposure? How might you determine whether a particular individual became ill as a result of exposure to dioxin? Which would be more difficult to demonstrate? Why?

Reed Mckee
Reed Mckee
Numerade Educator
04:13

Problem 15

In a short essay $(100-150$ words), discuss how the processes shown in Figure 18.2 are examples of feedback mechanisms regulating biological systems in bacterial cells.

Courtney Burson
Courtney Burson
Numerade Educator
03:08

Problem 16

The flashlight fish has an organ under its eye that emits light, which serves to startle predators and attract prey, and allows the fish to communicate with other fish. Some species can rotate the organ inside and then out, so the light appears to flash on and off. The light is not actually emitted by the fish itself, however, but by bacteria that live in the organ in a mutualistic relationship with the fish. (While providing light for the fish, the bacteria receive nutrients from the fish and in fact are unable to survive anywhere else.) The bacteria must multiply until they reach a certain density in the organ (a "quorum"; see Concept 11.1 ), at which point they all begin emitting light at the same time. There is a group of six or so genes, called lux genes, whose gene products are necessary for light formation. Given that these bacterial genes are regulated together, propose a hypothesis for how the genes are organized and regulated.

Courtney Burson
Courtney Burson
Numerade Educator