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Test: Prokaryotes - MCAT MCQ


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10 Questions MCQ Test Biology for MCAT - Test: Prokaryotes

Test: Prokaryotes for MCAT 2024 is part of Biology for MCAT preparation. The Test: Prokaryotes questions and answers have been prepared according to the MCAT exam syllabus.The Test: Prokaryotes MCQs are made for MCAT 2024 Exam. Find important definitions, questions, notes, meanings, examples, exercises, MCQs and online tests for Test: Prokaryotes below.
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Test: Prokaryotes - Question 1

Which of the following statements is true about prokaryotes?

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Prokaryotes are unicellular organisms that lack membrane-bound organelles such as a nucleus, mitochondria, or endoplasmic reticulum. Instead, their genetic material is present in a single circular chromosome located in the nucleoid region.

Test: Prokaryotes - Question 2

Which of the following is a characteristic feature of prokaryotes?

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Prokaryotes have a cell wall that provides structural support and protection. The cell wall composition varies among different types of prokaryotes, with bacteria having peptidoglycan in their cell wall, while archaea have different types of cell wall structures.

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Test: Prokaryotes - Question 3

Prokaryotes reproduce through a process called:

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Prokaryotes reproduce through binary fission, a process in which a single prokaryotic cell divides into two identical daughter cells. This process allows for rapid population growth in prokaryotic organisms.

Test: Prokaryotes - Question 4

Which of the following is NOT a domain of prokaryotes?

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Prokaryotes are classified into two domains: Bacteria and Archaea. The domain Eukarya includes organisms with eukaryotic cells, which have a true nucleus and membrane-bound organelles.

Test: Prokaryotes - Question 5

Prokaryotes obtain energy through various metabolic processes. Which of the following is NOT a common metabolic strategy of prokaryotes?

Detailed Solution for Test: Prokaryotes - Question 5

Prokaryotes do not perform endocytosis, which is a process by which eukaryotic cells engulf external materials. Instead, prokaryotes obtain nutrients through processes such as photosynthesis, cellular respiration, or fermentation.

Test: Prokaryotes - Question 6

Prokaryotes exhibit a high degree of genetic diversity due to:

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Prokaryotes exhibit genetic diversity through genetic recombination. This occurs through processes such as horizontal gene transfer, transformation, transduction, and conjugation, which allow for the exchange of genetic material between prokaryotic cells.

Test: Prokaryotes - Question 7

Prokaryotes play a crucial role in the nitrogen cycle by:

Detailed Solution for Test: Prokaryotes - Question 7

Certain prokaryotes, such as nitrogen-fixing bacteria, have the ability to convert atmospheric nitrogen gas (N2) into ammonia (NH3) through a process called nitrogen fixation. This ammonia can then be used by other organisms in the ecosystem.

Test: Prokaryotes - Question 8

Prokaryotes are found in a wide range of habitats, including:

Detailed Solution for Test: Prokaryotes - Question 8

Prokaryotes are incredibly diverse and can be found in various habitats, including soil, freshwater, and extreme environments such as hot springs and deep-sea vents. They have adapted to survive and thrive in a wide range of conditions.

Test: Prokaryotes - Question 9

Prokaryotes can exchange genetic material through a process called conjugation. What is conjugation?

Detailed Solution for Test: Prokaryotes - Question 9

Conjugation is a process in which genetic material, usually in the form of plasmids, is transferred between two prokaryotic cells. This transfer occurs through a pilus, a structure that connects the two cells, allowing for the exchange of genetic information.

Test: Prokaryotes - Question 10

Prokaryotes play a vital role in ecosystem functioning by:

Detailed Solution for Test: Prokaryotes - Question 10

Prokaryotes have essential ecological roles, including decomposing organic matter, producing oxygen through photosynthesis (in certain prokaryotes), and cycling nutrients such as carbon and nitrogen. These processes are fundamental for the balance and functioning of ecosystems.

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