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  • Question 1 - What characteristic do Entamoeba histolytica and Aspergillus fungi have in common? ...

    Correct

    • What characteristic do Entamoeba histolytica and Aspergillus fungi have in common?

      Your Answer: Membrane-bound nucleus

      Explanation:

      Protozoa vs Fungi: the Differences

      Protozoa and fungi are two distinct groups of organisms that share some similarities but also have significant differences. Protozoa are unicellular and mostly motile, while fungi are multicellular and mostly immobile. Both groups are eukaryotic, meaning they have a membrane-bound nucleus, but protozoa have an anal pore and pseudopods that are not found in fungi.

      The anal pore in protozoa is used for excretion of substances, while pseudopods are projections of membrane used to engulf substances for uptake. These structures are not present in fungi, which have a cell wall instead. Aspergillus, for example, is a multicellular fungus with a cell wall, while most protozoa, including Entamoeba, do not have a cell wall.

      the differences between protozoa and fungi is important for various fields, including medicine, agriculture, and ecology. For instance, protozoa can cause diseases such as malaria, while fungi can be used for food production or as biocontrol agents against pests. By studying the unique characteristics of these organisms, we can better appreciate their diversity and complexity in the natural world.

    • This question is part of the following fields:

      • Microbiology
      40.2
      Seconds
  • Question 2 - What is the definition of a pathogenic microbe? ...

    Correct

    • What is the definition of a pathogenic microbe?

      Your Answer: Has the ability to cause disease

      Explanation:

      Pathogenic Organisms

      A pathogenic organism has the potential to cause disease, but it does not necessarily mean that it will cause harm. The ability to cause illness depends on the environment in which the organism is present. For instance, Staphylococcus epidermidis is a harmless organism that lives on the skin without causing any harm. However, if it enters a sterile site, it can cause infections such as bone prosthesis infection.

      The environment plays a crucial role in determining whether an organism is pathogenic or not. Modifying the environment can cause a previously harmless organism to become pathogenic. For example, Cryptococcus is not a pathogenic organism in a patient with a healthy immune system. However, in an immunocompromised patient, it can cause meningitis.

      In conclusion, describing an organism as pathogenic refers to its potential to cause illness. The environment plays a significant role in determining whether an organism is pathogenic or not. Therefore, it is essential to understand the environment in which an organism is present to determine its pathogenicity.

    • This question is part of the following fields:

      • Microbiology
      14.7
      Seconds
  • Question 3 - What is the obligate intracellular pathogen that can cause respiratory and genital tract...

    Correct

    • What is the obligate intracellular pathogen that can cause respiratory and genital tract infections?

      Your Answer: Chlamydia species

      Explanation:

      The obligate intracellular pathogen that can cause respiratory and genital tract infections is Chlamydia trachomatis.

      Chlamydia trachomatis is a bacterium that can cause a variety of infections in humans, including respiratory infections such as pneumonia and genital tract infections such as urethritis, cervicitis, and pelvic inflammatory disease (PID). It is transmitted through sexual contact and can also be transmitted from mother to newborn during childbirth, leading to neonatal conjunctivitis and pneumonia.

    • This question is part of the following fields:

      • Microbiology
      19.8
      Seconds
  • Question 4 - Can you provide a definition for fungal mycelium? ...

    Correct

    • Can you provide a definition for fungal mycelium?

      Your Answer: Interconnecting mesh of hyphae

      Explanation:

      The Structure and Reproduction of Fungi

      Fungi are composed of hyphae, which are Multinucleated cells that are only partially separated from each other by septae. These cellular structures contain multiple membrane-bound nuclei and all other organelles, including vacuoles. Hyphae grow at their tips, branch, and connect with other hyphae to form a mesh called the fungal mycelium. While some fungi reproduce only asexually, most also demonstrate a form of sexual reproduction that involves the combination of two haploid structures, such as a hyphae and a spore.

      There are some fungi that exist as single cells, but they do not form a mycelium. Patients at risk of fungal infections include those on prolonged immunosuppression, prolonged steroid treatment, prolonged neutropenia, or those with congenital or acquired immunodeficiency disorders. Unlike plants, fungi do not have an organized system for transporting water. The fungal cell wall is different in composition from bacterial and plant cell walls, but it is still referred to with the same term.

    • This question is part of the following fields:

      • Microbiology
      53.7
      Seconds
  • Question 5 - What characteristic is shared by all fungi but not all bacteria? ...

    Correct

    • What characteristic is shared by all fungi but not all bacteria?

      Your Answer: Membrane-bound nucleus

      Explanation:

      Differences between Fungi and Bacteria

      Fungi and bacteria are two types of microorganisms that have distinct differences in their cellular structure and genetic makeup. Fungi are eukaryotic organisms, meaning they have a membrane-bound nucleus that contains their genetic material. On the other hand, bacteria are prokaryotic and lack a nucleus. Instead, they have a nucleoid, which is a collection of genetic material that is not membrane-bound.

      Both fungi and bacteria have cell walls, but the composition of these walls differs. Fungal cell walls contain chitin, which is not present in bacterial or plant cell walls. Additionally, while both types of microorganisms have endoplasmic reticulum and ribosomes, the ribosomes in bacteria are smaller than those in eukaryotes.

      Another difference between fungi and bacteria is the presence of plasmids. Bacteria have plasmids, which are circular rings of DNA that can be transmitted between organisms. Fungi, however, do not have plasmids.

      In summary, while fungi and bacteria share some similarities in their cellular structure, they have distinct differences in their genetic makeup and composition of their cell walls.

    • This question is part of the following fields:

      • Microbiology
      7.1
      Seconds
  • Question 6 - A surprised 25-year-old woman is brought to the emergency room with a possible...

    Incorrect

    • A surprised 25-year-old woman is brought to the emergency room with a possible diagnosis of Staphylococcus aureus toxic shock syndrome. What is one of the parameters used to diagnose systemic inflammatory response syndrome (SIRS)?

      Your Answer: Hourly urine output

      Correct Answer: White blood cell count

      Explanation:

      Systemic Inflammatory Response Syndrome

      Systemic inflammatory response syndrome (SIRS) is a condition that is diagnosed when a combination of abnormal parameters are detected. These parameters can be deranged for various reasons, including both infective and non-infective causes. Some examples of infective causes include Staph. aureus toxic shock syndrome, while acute pancreatitis is an example of a non-infective cause. The diagnosis of SIRS is based on the presence of a constellation of abnormal parameters, which include a temperature below 36°C or above 38.3°C, a heart rate exceeding 90 beats per minute, a respiratory rate exceeding 20 breaths per minute, and a white blood cell count below 4 or above 12 ×109/L.

      It is important to note that the systolic blood pressure is not included in the definition of SIRS. However, if the systolic pressure remains below 90 mmHg after a fluid bolus, this would be considered a result of septic shock. the criteria for SIRS is crucial for healthcare professionals to identify and manage patients with this condition promptly.

    • This question is part of the following fields:

      • Microbiology
      15.2
      Seconds
  • Question 7 - What is the leading cause of pneumonia affecting both lungs? ...

    Incorrect

    • What is the leading cause of pneumonia affecting both lungs?

      Your Answer: Streptococcus pneumoniae

      Correct Answer: Adenoviruses

      Explanation:

      Causes of Bilateral Pneumonia

      Bilateral pneumonia, which is the inflammation of both lungs, can be caused by various factors. The most common cause of this condition is viral infection, particularly upper respiratory tract viruses such as adenoviruses or rhinoviruses. This type of infection usually results in patchy bilateral central/perihilar shadowing on x-ray, rather than lobar consolidation.

      On the other hand, bacterial pneumonia, which is caused by pneumococcus or Streptococcus pneumoniae, typically results in the consolidation of a single lobe. Although bilateral infection can occur, it is less common than unilateral infection.

      The human herpes viruses (HHV) are a group of eight viruses that can cause different conditions, including pneumonia. Varicella zoster virus (VZV) is one of the HHV that can cause severe pneumonia, especially in pregnant women. However, this type of pneumonia is relatively rare.

      Primary TB, which initially affects a single lung, can also cause bilateral changes if the disease becomes more disseminated. Lastly, Mycoplasma pneumoniae can cause atypical pneumonia, which often includes bilateral opacification on x-ray. However, this type of pneumonia is less common than viral causes of bilateral pneumonia.

    • This question is part of the following fields:

      • Microbiology
      19.3
      Seconds
  • Question 8 - What is the enzyme that enables aerobic bacteria to survive in the presence...

    Correct

    • What is the enzyme that enables aerobic bacteria to survive in the presence of oxygen without succumbing to 'oxygen toxicity'?

      Your Answer: Superoxide dismutase

      Explanation:

      Bacterial Survival in the Presence of Oxygen

      Bacteria can be categorized into two types: aerobic and anaerobic. Anaerobic bacteria cannot survive in the presence of oxygen due to the formation of oxygen radicals that damage intracellular structures. On the other hand, aerobic bacteria have high levels of the enzyme superoxide dismutase, which breaks down the superoxide anion and prevents oxidative damage. Additionally, aerobic bacteria have several other similar enzymes that protect against oxygen radical-induced injury.

      Anaerobic bacteria generate ATP in an oxygen-independent process, such as fermentation of long-chain fatty acids. Facultative anaerobic bacteria prefer an anaerobic environment but have sufficiently high levels of anti-oxidant enzymes that they can survive in an aerobic environment.

      Carbonic anhydrase is an enzyme that converts water and carbon dioxide into H+ and HCO3−. Coenzyme Q is part of the electron transport chain, while lactate dehydrogenase converts pyruvate into lactate. NADPH oxidase is used in the ‘respiratory burst’ to generate toxic oxygen radicals.

      In summary, the survival of bacteria in the presence of oxygen depends on their ability to protect against oxygen radicals. Aerobic bacteria have high levels of protective enzymes, while anaerobic bacteria generate ATP in an oxygen-independent process. Facultative anaerobic bacteria can survive in both environments due to their high levels of anti-oxidant enzymes.

    • This question is part of the following fields:

      • Microbiology
      18.2
      Seconds
  • Question 9 - A 25-year old male who recently returned from central Africa is experiencing high...

    Correct

    • A 25-year old male who recently returned from central Africa is experiencing high fever and enlargement of the liver and spleen. He has not taken any medication within the past month. What type of organism is the probable cause of his infection?

      Your Answer: Protozoa

      Explanation:

      Malaria Transmission and Life Cycle

      Malaria is a disease caused by a protozoan called Plasmodium falciparum. The most likely diagnosis for someone who has recently travelled to a high-risk malaria region and has not been taking any antimalarial prophylaxis is malaria. However, leishmaniasis should also be considered if blood tests are negative for malaria.

      Mosquitoes are the carriers of malaria. They inject the disease in the form of schizonts from their salivary glands into the human bloodstream. These schizonts then migrate to the liver where they invade hepatocytes and multiply as merozoites. After a while, the hepatocytes rupture and the merozoites invade red blood cells in the bloodstream. In these cells, they undergo replication as trophozoites.

      At this stage, gametocytes can also be produced, which are taken up by feeding mosquitoes. In the mosquito midgut, gametocytes fuse to form an oocyst. Schizonts bud off from the oocyst to reside in the mosquito salivary glands. This completes the life cycle of malaria.

    • This question is part of the following fields:

      • Microbiology
      12.1
      Seconds
  • Question 10 - A 16-year old girl comes to the clinic with a complaint of fever....

    Correct

    • A 16-year old girl comes to the clinic with a complaint of fever. Upon examination, Gram negative diplococci are observed in her blood cultures. What is the probable causative agent?

      Your Answer: Neisseria meningitidis

      Explanation:

      Meningococcus: A Unique Gram Negative Diplococcus

      Meningococcus, also known as Neisseria meningitidis, is a rare Gram negative organism that presents itself as diplococci. This means that the bacteria are paired together, forming two spherical shapes that resemble a pair of eyes. While other Neisseria species and Diphtheria are also Gram negative organisms, meningococcus is the only possible organism that presents as diplococci.

      Meningococcus is a dangerous pathogen that can cause meningitis, septicaemia, or both. It is important to note that meningococcus is not the only organism that can cause these illnesses, but it is one of the most common culprits.

      In contrast, Escherichia coli is a Gram negative rod-shaped bacterium that is not present as diplococci. It is a single organism that does not form pairs. Haemophilus influenzae are Gram negative coccobacilli, but they do not present as paired organisms. Staphylococcus aureus and Streptococcus pyogenes are both Gram positive bacteria and are not related to meningococcus.

    • This question is part of the following fields:

      • Microbiology
      170.7
      Seconds

SESSION STATS - PERFORMANCE PER SPECIALTY

Microbiology (8/10) 80%
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