Etiological factors for the infectious diseases are often microorganisms with various ultrastructure. Which of the following microorganism groups relates to the eukaryotes?

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Microbiology Test Bank Questions

Question 1 of 9

Etiological factors for the infectious diseases are often microorganisms with various ultrastructure. Which of the following microorganism groups relates to the eukaryotes?

Correct Answer: A

Rationale: The correct answer is A: Protozoa. Protozoa are single-celled eukaryotic organisms, meaning they have a nucleus and other membrane-bound organelles. Eukaryotes have complex cellular structures that include a nucleus, mitochondria, and other organelles. Therefore, protozoa are eukaryotes. Viruses (B) are not considered cells and lack cellular structures. Viroids (C) are smaller infectious agents that consist of only RNA, lacking the cellular structure of eukaryotes. Prions (D) are infectious proteins and do not possess cellular structures like eukaryotes. So, protozoa are the only choice that relates to eukaryotes due to their cellular structure.

Question 2 of 9

Which of the media listed is used to cultivate pneumococci:

Correct Answer: B

Rationale: The correct answer is B: Blood agar. Pneumococci are fastidious bacteria that require enriched media for cultivation. Blood agar provides essential nutrients and growth factors needed for the growth of pneumococci. It contains sheep blood, which provides hemin and NAD, supporting the growth of these bacteria. Kligler iron agar (A) is used for differentiating enteric bacteria based on glucose and lactose fermentation. Apocholate citrate agar (C) is used for the selective isolation of Escherichia coli. Peptone water (D) is a non-selective medium used for the initial cultivation of microorganisms.

Question 3 of 9

Which of the following statements regarding the antigenic drift is NOT true

Correct Answer: B

Rationale: The correct answer is B because antigenic drift is not caused by the exchange of genetic information between animal and human influenza viruses. Antigenic drift is actually due to point mutations in the genes that encode for the surface proteins of the virus, leading to small changes in the antigens. These mutations can affect the hemagglutinin of both type A and B influenza viruses, making choices A and C correct. Choice D is incorrect because antigenic drift can occur in both type A and B influenza viruses, with type B being less prone to drift compared to type A.

Question 4 of 9

What is soor?

Correct Answer: D

Rationale: The correct answer is D: Oral candidiasis. Soor is a term used to describe oral candidiasis, a fungal infection caused by Candida species. This infection presents as white patches on the tongue, inner cheeks, and roof of the mouth. The other choices (A, B, C) refer to different types of fungal infections affecting various parts of the body, not specifically the oral cavity. Therefore, based on the description of soor and its characteristics, the correct answer is D.

Question 5 of 9

A 42-year-old patient with gastric ulcer has a disbalance between the aggressive and defensive factors. Which of the following factors contributes to the development of gastric ulcer?

Correct Answer: A

Rationale: The correct answer is A: Helicobacter pylori. This bacterium is a major cause of gastric ulcers by disrupting the balance between aggressive (acid, pepsin) and defensive (mucus, bicarbonate, prostaglandins) factors in the stomach lining. H. pylori infection leads to inflammation, weakening the protective mucosal barrier, making the stomach more susceptible to damage. Choices B, C, and D are defensive factors that help protect the stomach lining and prevent ulcer formation, so they do not contribute to the development of gastric ulcers.

Question 6 of 9

Those organisms which in the process of evolution failed to develop protection from H O can exist 2 2 only in anaerobic conditions. Which of the following enzymes can break hydrogen peroxide down?

Correct Answer: A

Rationale: The correct answer is A: Peroxidase and catalase. Peroxidase and catalase are enzymes that break down hydrogen peroxide into water and oxygen. Peroxidase helps in breaking down low levels of hydrogen peroxide, while catalase is crucial for breaking down high levels of hydrogen peroxide efficiently. This process is important for organisms to prevent damage from reactive oxygen species. Choices B, C, and D are incorrect: B: Oxygenase and hydroxylase are enzymes involved in different biochemical reactions and do not break down hydrogen peroxide. C: Cytochrome oxidase and cytochrome B5 are involved in electron transport chain reactions and not in breaking down hydrogen peroxide. D: Oxygenase and catalase are not correct as oxygenase is not involved in hydrogen peroxide breakdown, only catalase is.

Question 7 of 9

Which of the following bacteria is responsible for producing a neurotoxin that causes tetanus?

Correct Answer: B

Rationale: The correct answer is B: Clostridium tetani. Clostridium tetani produces tetanospasmin, a neurotoxin causing tetanus. It enters the body through wounds and affects the nervous system. A: Clostridium botulinum produces botulinum toxin causing botulism, not tetanus. C: Streptococcus pneumoniae causes pneumonia, not tetanus. D: Mycobacterium tuberculosis causes tuberculosis, not tetanus.

Question 8 of 9

What is the associated disease for rubella virus

Correct Answer: D

Rationale: The correct answer is D: Fifth disease. Rubella virus is associated with Fifth disease, also known as erythema infectiosum. It is caused by parvovirus B19, not rubella virus. Mumps (choice A) is caused by the mumps virus. Roseola (choice B) is caused by human herpesvirus 6 or 7. Rubeola (choice C) is the scientific name for measles, caused by the measles virus. Therefore, the correct answer is Fifth disease as it is the disease associated with rubella virus.

Question 9 of 9

One of the defense mechanisms in place in the organs/tissues of the reproductive tract that prevent microbial infection includes:

Correct Answer: B

Rationale: The correct answer is B: acidic pH. The reproductive tract's acidic pH serves as a defense mechanism by creating an environment hostile to many pathogens, preventing microbial infection. The acidic pH helps to inhibit the growth and survival of harmful microorganisms. A: Alkaline pH would actually be more favorable for microbial growth as most pathogens thrive in neutral to alkaline pH environments. C: High sugar concentration can actually promote microbial growth as many pathogens feed on sugars. D: High body temperature may help in some cases, but it is not as effective as an acidic pH in preventing microbial infection in the reproductive tract.

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