Biology: The Dynamic Science
Biology: The Dynamic Science
4th Edition
ISBN: 9781337246422
Author: Peter J. Russell; Paul E. Hertz; Beverly McMillan
Publisher: Cengage Learning US
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Chapter 15, Problem 14TYK
Summary Introduction

To review:

A geneticist is attempting to isolate mutations in the genes for four enzymes acting in a metabolic pathway in the bacterium Escherichia coli. Developing a hypothesis to explain that the geneticist has been able to isolate mutations in the genes for enzymes 1 and 2, but not for enzymes 3 and 4.

Introduction:

Enzymes are the proteins coded by genes (sequence of nucleotides) present in DNA (Deoxyribonucleic acid). Different genes code for different enzymes in the cell. The enzyme binds to a substrate and subsequently forms a product. Gene is a sequence of nucleotides and if there is any change (mutation) in the nucleotide sequence of a gene coding for an enzyme; the enzyme formed will have some or all of its properties changed, depending upon the type of mutation.

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After you feel comfortable with your counting method and identifying cells in the various stages of mitosis, use the four images below of whitefish blastula to count the cells in each stage until you reach 100 total cells, recording your data below in Data Table 1. (You may not need to use all four images. Stop counting when you reach 100 total cells.) After totaling the cells in each stage, calculate the percent of cells in each stage. (Divide total of stage by overall total of 100 and then multiply by 100 to obtain percentage.)   Data Table 1Stage    Totals    PercentInterphase        Mitosis:        Prophase        Metaphase        Anaphase        Telophase        Cytokinesis        Totals    100    100% To find the length of time whitefish blastula cells spend in each stage, multiply the percent (recorded as a decimal, in other words take the percent number and divide by 100) by 24 hours. (Example: If percent is 20%, then Time in Hours = .2 * 24 = 4.8) Record your data in Data…
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