/*! This file is auto-generated */ .wp-block-button__link{color:#fff;background-color:#32373c;border-radius:9999px;box-shadow:none;text-decoration:none;padding:calc(.667em + 2px) calc(1.333em + 2px);font-size:1.125em}.wp-block-file__button{background:#32373c;color:#fff;text-decoration:none} 16-10TYU Some bacteria may be able to res... [FREE SOLUTION] | 91Ó°ÊÓ

91Ó°ÊÓ

Some bacteria may be able to respond to environmental stress by increasing the rate at which mutations occur during cell division. How might this be accomplished? Might there be an evolutionary advantage to this ability? Explain.

Short Answer

Expert verified

Some bacteria tend to survive within the environmental stress that increases the mutation rate via stress-induced mutagenesis.

The evolutionary advantage of stress-induced mutagenesis is that it can increase genetic variation, increasing the survival ability of the bacteria.

Step by step solution

01

Description of cell division and mutation

Cell division is the process that forms the new cells from the existing cells by forming a septum within the cells. The daughter cells are identical to the parent cells.

The mutation is the undesirable change due to radiation exposure or other stress conditions to the organism.

02

Stress-induced mutagenesis

The changes that happen in the genetic material due to the mutation process are known as mutagenesis. It happens due to mutagenic exposure to the cells.

Stress-induced mutagenesis is the mutation that occurs in an organism due to environmental stress.

03

Evolutionary advantage of the stress-induced mutagenesis

An organism such as bacteria is susceptible to stress-induced mutagenesis. Bacteria are organism that survives in changing environments. The bacterium must undergo various mutations to increase its survival rate among stressful conditions to stay in the changing environment.

From the evolutionary aspects, stress-induced mutagenesis plays a vital role in increasing the survival ability of the bacteria to tackle environmental stress—the genetic diversity of the bacteria increases due to the mutation processes.

Hence, the mutations that occur in the bacteria have an evolutionary advantage to increase the genetic diversity of the bacteria, which in turn increases the mutation ability.

Unlock Step-by-Step Solutions & Ace Your Exams!

  • Full Textbook Solutions

    Get detailed explanations and key concepts

  • Unlimited Al creation

    Al flashcards, explanations, exams and more...

  • Ads-free access

    To over 500 millions flashcards

  • Money-back guarantee

    We refund you if you fail your exam.

Over 30 million students worldwide already upgrade their learning with 91Ó°ÊÓ!

One App. One Place for Learning.

All the tools & learning materials you need for study success - in one app.

Get started for free

Most popular questions from this chapter

E.coli grown on a 15N medium is transferred to a 14N medium and allowed to grow for two more generations (two rounds of DNA replication). DNA extracted from these cells is centrifuged. What density distribution of DNA would you expect in this experiment?

  1. one high-density and one low-density band
  2. one intermediate density band
  3. one high density and one intermediate-density band
  4. one low-density and one intermediate-density band

Given a polynucleotide sequence such as GAATTC. Explain what further information you would need in order to identify which is the 5’ end. (See Figure 16.5)

In his work with pneumonia-causing bacteria and mice, Griffith found that

  1. the protein coat from pathogenic cells was able to transform non-pathogenic cells.
  2. heat-killed pathogenic cells caused pneumonia.
  3. some substances from pathogenic cells were transferred to non-pathogenic cells, making them pathogenic.
  4. the polysaccharide coat of bacteria caused pneumonia.

In analyzing the number of different bases in a DNA sample, which would be consistent with the base-pairing rules?

  1. A=G
  2. A+G=C+T.
  3. A+T=G+C.
  4. A=C.

: If Chargaff's rule—that the amount of A equals the amount of T and the amount of C equals the amount of G—is valid, then hypothetically, we could extrapolate this to the combined DNA of all species on Earth (like one huge Earth genome). To see whether the data in the table support this hypothesis, calculate the average percentage for each base in your completed table by averaging the values in each column. Does Chargaff's equivalence rule still hold true?

Source of DNA

Base Percentage

Adenine

Guanine

Cytosine

Thymine

Sea urchin

32.8

17.7

17.3

32.1

Salmon

29.7

20.8

20.4

29.1

Wheat

28.1

21.8

22.7

27.4

E. coli

24.7

26.0

25.3

24.0

Human

30.4

19.8

19.8

30.1

Ox

29.0

21.0

21.0

29.0

See all solutions

Recommended explanations on Biology Textbooks

View all explanations

What do you think about this solution?

We value your feedback to improve our textbook solutions.

Study anywhere. Anytime. Across all devices.