Exam 8: Nucleic Acid-Based Analytic Methods for Microbial Identification and Characterization
Exam 1: Microbial Taxonomy10 Questions
Exam 2: Bacterial Genetics, Metabolism, and Structure25 Questions
Exam 3: Host-Microorganism Interactions25 Questions
Exam 4: Laboratory Safety25 Questions
Exam 5: Specimen Management20 Questions
Exam 6: Role of Microscopy15 Questions
Exam 7: Traditional Cultivation and Identification30 Questions
Exam 8: Nucleic Acid-Based Analytic Methods for Microbial Identification and Characterization15 Questions
Exam 9: Immunochemical Methods Used for Organism Detection10 Questions
Exam 10: Serologic Diagnosis of Infectious Diseases20 Questions
Exam 11: Principles of Antimicrobial Action and Resistance15 Questions
Exam 12: Laboratory Methods and Strategies for Antimicrobial Susceptibility Testing20 Questions
Exam 13: Staphylococcus Micrococcus and Similar Organisms15 Questions
Exam 14: Streptococcus Enterococcus and Similar Organisms20 Questions
Exam 15: Bacillus and Similar Organisms10 Questions
Exam 16: Listeria Corynebacterium and Similar Organisms10 Questions
Exam 17: Erysipelothrix Lactobacillus and Similar Organisms10 Questions
Exam 18: Nocardia Streptomyces Rhodococcus and Similar Organisms10 Questions
Exam 19: Enterobacteriaceae20 Questions
Exam 20: Acinetobacter, Stenotrophomonas, and Other Organisms10 Questions
Exam 21: Pseudomonas, Burkholderia, and Similar Organisms10 Questions
Exam 22: Rhizobium, Ochrobactrum, and Similar Organisms10 Questions
Exam 23: Chryseobacterium, Sphingobacterium, and Similar Organisms10 Questions
Exam 24: Alcaligenes, Bordetella Nonpertussis, Comamonas, and Similar Organisms10 Questions
Exam 25: Vibrio, Aeromonas, Chromobacterium, and Related Organisms20 Questions
Exam 26: Sphingomonas Paucimobilis and Similar Organisms5 Questions
Exam 27: Moraxella and Related Organisms10 Questions
Exam 28: Eikenella and Similar Organisms5 Questions
Exam 29: Pasteurella and Similar Organisms5 Questions
Exam 30: Actinobacillus, Aggregatibacter, Kingella, Cardiobacterium, Capnocytophaga, and Similar Organisms10 Questions
Exam 31: Haemophilus20 Questions
Exam 32: Bartonella and Afipia5 Questions
Exam 33: Campylobacter, Arcobacter, and Helicobacter10 Questions
Exam 34: Legionella5 Questions
Exam 35: Brucella5 Questions
Exam 36: Bordetella Pertussis, Bordetella Parapertussis, and Related Species10 Questions
Exam 37: Francisella5 Questions
Exam 38: Streptobacillus Moniliformis and Spirillum Minus5 Questions
Exam 39: Neisseria and Moraxella Catarrhalis20 Questions
Exam 40: Overview and General Considerations24 Questions
Exam 41: Overview of Anaerobic Organisms25 Questions
Exam 42: Mycobacteria45 Questions
Exam 43: Obligate Intracellular and Non-culturable Bacterial Agents10 Questions
Exam 44: Cell Walldeficient Bacteria: Mycoplasma and Ureaplasma10 Questions
Exam 45: The Spirochetes24 Questions
Exam 46: Laboratory Methods for Diagnosis of Parasitic Infections: Overview20 Questions
Exam 47: Intestinal Protozoa20 Questions
Exam 48: Blood and Tissue Protozoa22 Questions
Exam 49: Other Protozoa12 Questions
Exam 50: Intestinal Nematodes Roundworms10 Questions
Exam 51: Tissue Nematodes Roundworms8 Questions
Exam 52: Blood and Tissue Filarialnematodes10 Questions
Exam 53: Intestinal Cestodes5 Questions
Exam 54: Tissue Cestodes5 Questions
Exam 55: Intestinal Trematodes5 Questions
Exam 56: Liver and Lung Trematodes8 Questions
Exam 57: Blood Trematodes5 Questions
Exam 58: Overview of Fungal Identification Methods and Strategies20 Questions
Exam 59: Hyaline Molds, Mucorales Zygomycetes, Dermatophytes, and Opportunitistic and Systemic Mycoses20 Questions
Exam 60: Dematiaceous Melanizedmolds16 Questions
Exam 61: Opportunistic Atypical Fungus: Pneumocystis Jiroveci5 Questions
Exam 62: The Yeasts18 Questions
Exam 63: Anti-fungal Susceptibility Testing, Therapy, and Prevention9 Questions
Exam 64: Overview of the Methods and Strategies in Virology36 Questions
Exam 65: Viruses in Human Disease32 Questions
Exam 66: Antiviral Therapy, Susceptibility Testing, and Prevention19 Questions
Exam 67: Bloodstream Infections15 Questions
Exam 68: Infections of the Lower Respiratory Tract14 Questions
Exam 69: Upper Respiratory Tract Infections and Other Infections of the Oral Cavity and Neck27 Questions
Exam 70: Meningitis, Encephalitis, and Other Infections of the Central Nervous System12 Questions
Exam 71: Infections of the Eyes, Ears, and Sinuses14 Questions
Exam 72: Infections of the Urinary Tract10 Questions
Exam 73: Genital Tract Infections24 Questions
Exam 74: Gastrointestinal Tract Infections10 Questions
Exam 75: Skin, Soft Tissue, and Wound Infections13 Questions
Exam 76: Normally Sterile Body Fluids, Bone and Bone Marrow, and Solid Tissues10 Questions
Exam 77: Quality in the Clinical Microbiology Laboratory14 Questions
Exam 78: Infection Control10 Questions
Exam 79: Sentinel Laboratory Response to Bioterrorism5 Questions
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Complementary nucleic acid hybridization, which is coupled with nucleic acid replication and applied repeatedly through numerous cycles, is based on which of the following methods?
Free
(Multiple Choice)
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Correct Answer:
C
Determining the exact nucleotide sequence of a gene or gene fragment obtained from an unknown organism is based on which of the following methods?
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(Multiple Choice)
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Correct Answer:
B
Nucleic acid sequencing methods are based on:
Free
(Multiple Choice)
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Correct Answer:
D
The enzyme that has the ability to synthesize DNA from ribonucleic acid (RNA)is called:
(Multiple Choice)
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Gen-Probe Mycobacterium tuberculosis direct test uses which type of nucleic acid amplification test?
(Multiple Choice)
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The enzyme that is commonly used for primer extensions in the PCR method works best at what temperature?
(Multiple Choice)
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Which enzyme recognizes a specific nucleotide sequence (~4-8 nucleotides in length)and catalyzes the digestion of the nucleic acid at that site, causing a break in the DNA strand?
(Multiple Choice)
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The optimal way to detect PCR amplicons is to use which stain?
(Multiple Choice)
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Target nucleic acid amplification (polymerase chain reaction [PCR])methods are based on:
(Multiple Choice)
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An organism whose genetic makeup is 50% C-G bonds would have a(n)_________ melting temperature (Tm), compared with an organism with 20% C-G bonds.
(Multiple Choice)
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The ability of two nucleic acid strands, a probe and a target, which have complementary base sequences that specifically bond with each other and form a double-stranded molecule, drives which of the following methods?
(Multiple Choice)
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Which type of hybridization method would be the optimal choice to use to detect a lesion infected with a particular virus?
(Multiple Choice)
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