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A pathogenic bacterium’s toxin causes symptoms that increase the bacterium’s chance of spreading from host to host. Does this information indicate whether the poison is an exotoxin or endotoxin? Explain.

Short Answer

Expert verified

The endotoxins released by the bacteria are localized within cells and cannot leave the body. However, exotoxins are released outside the body, and they can quickly leave the body and spread from one individual to another. Therefore, the poison that is released by a pathogenic bacterium is an exotoxin.

Step by step solution

01

Toxins produced by pathogenic bacteria

Pathogenic bacteria are capable of producing two types of proteins called exotoxins and endotoxins.Different mechanisms produce both the toxins, and their mode of action is ultimately different from one another. The toxins are very dangerous and can cause serious imbalances in the body.

02

Endotoxins

Endotoxins are those toxins that are produced by gram-negative bacteria. The endotoxins are lipopolysaccharides that are produced by the cell wall of the bacteria by the action of phospholipids. These endotoxins can leak into the blood and reach different tissues of the body.

03

Exotoxins

Exotoxins are toxins that are produced by bacterial cells. These exotoxins are very dangerous because they can damage the cells of the body and invade different organs of the body. Additionally, they can also spread from one host to another.

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Most popular questions from this chapter

In a short essay (about 100–150 words), discuss how prokaryotes and other members of hydrothermal vent communities transfer and transform energy.

Plant like photosynthesis that releases O2 occurs in

(A) cyanobacteria.

(B) archaea.

(C) gram-positive bacteria.

(D) chemoautotrophic bacteria.

The mean (\(\overline x \,\)) of a variable is the sum of the data values divided by the number of observations (n):

\(\overline x \, = \,\frac{{\sum {{x_i}} }}{n}\)

In this formula,\({x_i}\)is the value of the ith observation of the variable; the\(\sum {} \)symbol indicates that the nvalues of xare to be added together. Calculate the mean for each treatment.

The standard error (SE), which indicates how greatly the mean would likely vary if the experiment was repeated, is calculated as:\({\rm{SE}} = \,\frac{s}{{\sqrt n }}\).

As a rough rule of thumb, if an experiment were to be repeated, the new mean typically would lie within two standard errors of the original mean (that is, within the range of\(\overline x \, \pm \,2{\rm{SE}}\)). Calculate\(\overline x \, \pm \,2{\rm{SE}}\)for each treatment, determine whether these ranges overlap, and interpret your results.

Treatment

Dose (mg/kg)

Log of number

of colonies

Mean (\(\overline x \,\))

\({x_i}\, - \,\overline x \)

Standard deviation (s)

SE

Control

-

9.0,9.5,9.0,8.9

9.1

(-0.1), 0.4, (-0.1), (-0.2)

0.270

0.135

Vancomycin

1.0

8.5,8.4,8.2

8.36

0.14, 0.04, (-0.16)

0.152

0.087

5.0

5.3,5.9,4.7

5.3

0, 0.6, (-0.6)

0.6

0.346

Teixobactin

1.0

8.5,6.0,8.4,6.0

7.22

1.28, (-1.22), 1.18, (-1,22)

1.14

0.57

5.0

3.8,4.9,5.2,4.9

4.7

(-0.9), 0.2,0.5, 0.2

0.616

0.308

MAKE CONNECTIONS Review Figure 10.6. Then summarize the main steps by which cyanobacteria produce O2 and use CO2 to make organic compounds.

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