Biology: The Dynamic Science (MindTap Course List)
Biology: The Dynamic Science (MindTap Course List)
4th Edition
ISBN: 9781305389892
Author: Peter J. Russell, Paul E. Hertz, Beverly McMillan
Publisher: Cengage Learning
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Chapter 14, Problem 1TYK

Working on the Amazon River, a biologist isolated DNA from two unknown organisms, P and Q. He discovered that the adenine content of P was 15% and the cytosine content of Q was 42%. This means that:

a. the amount of guanine in P is 15%.

b. the amount of guanine and cytosine combined in P is 70%.

c. the amount of adenine in Q is 42%.

d. the amount of thymine in Q is 21%.

e. it takes more energy to unwind the DNA of P than theDNA of Q.

Expert Solution & Answer
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Summary Introduction

Introduction:

The genetic material in DNA (deoxyribonucleic acid) contains four types of nucleotides. These nucleotides consist of sugar, deoxyribose, a phosphate group, and a nitrogen base. There are four types of nitrogenous bases that are present in DNA. These are guanine, adenine, cytosine, and thymine. The guanine and adenine are purines and cytosine and thymine are pyrimidines.

Answer to Problem 1TYK

Correct answer:

The content of guanine and cytosine combined in P is 70%.

Explanation of Solution

Justification for the correct answer:

Option (b) states that the amount of guanine and cytosine combined in P is 70%. The amount of adenine content of P was 15%, which means that the amount of thymine must also be 15%. This makes up 30%, which means that the other two bases guanine and cytosine constitute 70% of the content. Hence, option (b) is correct.

Justification for the incorrect answers:

Option (a) states that the amount of guanine in P is 15%. The amount of adenine and thymine is 15% and the sum of the other two bases guanine and cytosine is 70%. The amount of guanine is equal to that of cytosine, so each base must be 35% and not 15%. So, it is an incorrect option.

Option (c) states that the amount of adenine in Q is 42%. The amount of cytosine in Q is 42% and because the amount of guanine is equal to that of cytosine, the sum of cytosine and guanine in Q must be 84%. The other two bases adenine and thymine, thus constitute 16% of the content, which means that adenine must be 8% and not 42%. So, it is an incorrect option.

Option (d) states that the amount of thymine in Q is 21%. The amount of cytosine in Q is 42% and because the amount of guanine is equal to that of cytosine, the sum of cytosine and guanine in Q must be 84%. The other two bases adenine and thymine constitute 16% of the content, which means that thymine must be 8% and not 21%. So, it is an incorrect option.

Option (e) states that it takes more energy to unwind the DNA of P than to unwind the DNA of Q. There are three hydrogen bonds between guanine and cytosine and two between adenine and thymine. It will take more energy to break three hydrogen bonds than to break two hydrogen bonds. The sum of guanine and cytosine content in P is 70% of the content and in Q is 84% of the content. Thus, it takes more energy to unwind the DNA of Q than to unwind the DNA of P. So, it is an incorrect option.

Hence, options, (a), (c), (d), and (e) are incorrect.

Conclusion

Thus, it can be concluded that the total content of guanine and cytosine in the organism P is 70%. This is because the amount of adenine is equal to that of thymine and the amount of adenine is equal to that of thymine in DNA. The total amount of adenine and thymine in the organism P is 30%.

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Students have asked these similar questions
A researcher sequences the genome of a variety of bacterial and eukaryotic cells. She finds that the bacterial genome is smaller, but that there are more genes for a given number of base pairs in the eukaryotic cells. In other words, there are fewer genes per unit of length of DNA in the eukaryotic cells. What do you predict she will find if she examines the DNA more closely? A. All of the bacterial DNA consists of coding sequences, but this is not true of the eukaryotic DNA. B. There are more repetitive sequences in the eukaryotic DNA than in the bacterial DNA. C. There are densely packed genes in the eukaryotic DNA that were not immediately distinguishable during the first analysis. D. The bacteria have larger quantities of noncoding DNA than the eukaryotic cells.
If DNA of a particular species was analyzed and it was found that it contains 27 percent A, what would be the percentage of C? a. 27 percent b. 30 percent c. 23 percent d. 54 percent
Refer to Figure 2 and compare this with the DNA model in Figure 1. a. In what ways are they similar? b. In what ways are they different? c. What is the biological significance of such differences? Why is the DNA referred to as the genetic material?
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