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BIOD 171 FINAL EXAM] – QUESTIONS AND ANSWERS | VERIFIED AND WELL DETAILED ANSWERS | PLUS RATIONALES | GUARANTEED PASS | LATEST EXAM UPDATE

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BIOD 171 FINAL EXAM] – QUESTIONS AND ANSWERS | VERIFIED AND WELL DETAILED ANSWERS | PLUS RATIONALES | GUARANTEED PASS | LATEST EXAM UPDATE

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BIOD 171 FINAL EXAM] – QUESTIONS AND ANSWERS | VERIFIED AND WELL DETAILED ANSWERS |
PLUS RATIONALES | GUARANTEED PASS | LATEST EXAM UPDATE

Core Domains

1. Microbial Structure and Function
2. Microbial Metabolism and Growth
3. Microbial Genetics and Molecular Biology
4. Virology and Viral Pathogenesis
5. Bacteriology and Bacterial Pathogenesis
6. Mycology and Fungal Pathogenesis
7. Parasitology and Parasitic Pathogenesis
8. Host-Pathogen Interactions and Immunology
9. Epidemiology and Public Health Microbiology
10. Antimicrobial Therapy and Resistance

Introduction

This comprehensive examination is designed to rigorously assess your mastery of fundamental and
applied microbiology concepts as required for the BIOD 171 Final Exam. It evaluates your understanding
of microbial structure, function, genetics, and pathogenesis, alongside the principles of immunology,
epidemiology, and antimicrobial strategies. The exam employs a multiple-choice format, including
scenario-based questions, to test your critical thinking and decision-making skills in clinical and public
health contexts. Success requires not only recall of factual knowledge but also the ability to apply
microbiological principles to real-world problems, from diagnosing infections to managing resistance and
preventing disease transmission. This assessment ensures you are prepared for professional-level
application of microbiology.




SECTION ONE: QUESTIONS 1 – 100



1. Which of the following is a characteristic unique to prokaryotic cells when compared to
eukaryotic cells?

A. Presence of ribosomes
B. Presence of a cell wall
C. Presence of a nucleoid region
D. Presence of a plasma membrane

🟢 C. Presence of a nucleoid region
🔴 Explanation: Prokaryotic cells lack a membrane-bound nucleus and instead have a nucleoid region
where their genetic material is located. This is a defining structural difference from eukaryotic cells,
which possess a true nucleus.

,2. A Gram-positive bacterium is treated with lysozyme. What is the most immediate and direct
effect of this treatment?

A. Inhibition of protein synthesis
B. Disruption of the outer membrane
C. Hydrolysis of the peptidoglycan layer
D. Inhibition of DNA replication

🟢 C. Hydrolysis of the peptidoglycan layer
🔴 Explanation: Lysozyme is an enzyme that specifically hydrolyzes the beta-1,4-glycosidic bonds in
peptidoglycan, the major component of the bacterial cell wall. This directly compromises the structural
integrity of the cell wall.




3. During the Gram staining procedure, a decolorizer (e.g., 95% ethanol) is applied. What is the
primary function of this step?

A. To fix the bacterial cells to the slide
B. To allow the primary stain to penetrate the cell
C. To differentiate bacteria based on cell wall composition
D. To form an insoluble crystal violet-iodine complex

🟢 C. To differentiate bacteria based on cell wall composition
🔴 Explanation: The decolorizer step is critical for differentiation. It dehydrates the thick peptidoglycan
layer of Gram-positive cells, trapping the crystal violet-iodine complex, while it dissolves the outer
membrane and removes the stain from the thin peptidoglycan layer of Gram-negative cells.




4. A clinical isolate is identified as a Gram-negative rod. Which of the following virulence factors is
most likely associated with this pathogen, contributing to its ability to cause septic shock?

A. Teichoic acid
B. Lipopolysaccharide (LPS)
C. Lipoteichoic acid
D. Mycolic acid

🟢 B. Lipopolysaccharide (LPS)
🔴 Explanation: Lipopolysaccharide (LPS), also known as endotoxin, is a major component of the outer
membrane of Gram-negative bacteria. The Lipid A portion of LPS is a potent stimulator of the host
immune response, leading to the release of inflammatory cytokines and potentially causing septic
shock.

,5. A bacterial cell is observed to have a high concentration of a plasmid carrying a gene for beta-
lactamase. This plasmid is most likely to confer resistance against which class of antibiotics?

A. Aminoglycosides
B. Tetracyclines
C. Penicillins
D. Macrolides

🟢 C. Penicillins
🔴 Explanation: Beta-lactamase is an enzyme that hydrolyzes the beta-lactam ring, the core structure
of penicillins and other beta-lactam antibiotics, thereby inactivating the drug and conferring resistance
to this specific class.




6. Which of the following processes requires a live bacterial donor cell to physically connect with a
recipient cell via a sex pilus?

A. Transformation
B. Transduction
C. Conjugation
D. Transposition

🟢 C. Conjugation
🔴 Explanation: Conjugation is the process of gene transfer between bacterial cells that requires
direct, physical cell-to-cell contact. This contact is mediated by a sex pilus, which forms a bridge for the
transfer of DNA, typically a plasmid.




7. A virus that infects a bacterial cell and then integrates its genome into the host's chromosome,
remaining dormant, is characterized as a:

A. Virulent phage
B. Temperate phage
C. Provirus
D. Retrovirus

🟢 B. Temperate phage
🔴 Explanation: A temperate phage is a bacteriophage that can establish a lysogenic cycle. During this
cycle, its genome is integrated into the host bacterial chromosome as a prophage, replicating along
with the host cell without causing immediate cell lysis.

, 8. A patient presents with a severe respiratory infection. Sputum culture on blood agar reveals
colonies with a greenish, metallic sheen (alpha-hemolysis). The organism is catalase-negative. What
is the most likely pathogen?

A. Staphylococcus aureus
B. Streptococcus pyogenes
C. Streptococcus pneumoniae
D. Klebsiella pneumoniae

🟢 C. Streptococcus pneumoniae
🔴 Explanation: Streptococcus pneumoniae is a catalase-negative, alpha-hemolytic (greenish
discoloration) bacterium that is a common cause of community-acquired pneumonia. Catalase
negativity differentiates it from Staphylococcus species.




9. Which of the following correctly describes the primary difference between a prokaryotic and a
eukaryotic ribosome?

A. Prokaryotic ribosomes are 80S, eukaryotic are 70S.
B. Prokaryotic ribosomes are larger and more complex.
C. Prokaryotic ribosomes consist of 50S and 30S subunits.
D. Prokaryotic ribosomes are exclusively attached to the endoplasmic reticulum.

🟢 C. Prokaryotic ribosomes consist of 50S and 30S subunits.
🔴 Explanation: Prokaryotic ribosomes are 70S, composed of a large 50S subunit and a small 30S
subunit. Eukaryotic ribosomes are 80S, composed of 60S and 40S subunits. This structural difference is
a key target for antibiotics that selectively inhibit prokaryotic protein synthesis.




10. What is the primary mechanism of action of polymyxin B, an antibiotic often used as a last
resort for multidrug-resistant infections?

A. Inhibition of protein synthesis
B. Inhibition of cell wall synthesis
C. Disruption of the bacterial cytoplasmic membrane
D. Inhibition of DNA replication

🟢 C. Disruption of the bacterial cytoplasmic membrane
🔴 Explanation: Polymyxin B acts as a detergent-like molecule that binds to lipopolysaccharide and
phospholipids in the bacterial outer and cytoplasmic membranes, disrupting their integrity and leading
to cell lysis.

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