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Test: Recombinant DNA Technology - NEET MCQ


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10 Questions MCQ Test - Test: Recombinant DNA Technology

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Test: Recombinant DNA Technology - Question 1

The enzyme which cleaves RNA is _______

Detailed Solution for Test: Recombinant DNA Technology - Question 1

Ribonuclease is the enzyme responsible for catalyzing the cleavage of RNA. RNA stands for ribonucleic acid. It is also known as RNase. It also cleaves the DNA-RNA hybrids.

Test: Recombinant DNA Technology - Question 2

What is the purpose of treating bacterial cells or plant/animal tissue with enzymes like lysozyme, cellulase, or chitinase in the process of recombinant DNA technology?

Detailed Solution for Test: Recombinant DNA Technology - Question 2

Enzymes like lysozyme, cellulase, and chitinase are used to break down cell walls and release DNA from cells.

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Test: Recombinant DNA Technology - Question 3

Which technique is employed to check the progression of a restriction enzyme digestion in recombinant DNA technology?

Detailed Solution for Test: Recombinant DNA Technology - Question 3

Agarose gel electrophoresis is used to check the progress of a restriction enzyme digestion by separating DNA fragments based on size.

Test: Recombinant DNA Technology - Question 4

What is the purpose of using a selectable marker gene like ampicillin resistance in recombinant DNA technology?

Detailed Solution for Test: Recombinant DNA Technology - Question 4

Selectable marker genes like ampicillin resistance help in identifying and selecting cells that have taken up the recombinant DNA.

Test: Recombinant DNA Technology - Question 5

The restriction enzyme needs to be in _____ form to cut the DNA.

Detailed Solution for Test: Recombinant DNA Technology - Question 5

The restriction enzyme needs to be in pure form to cut the DNA. The restriction enzymes are molecular scissors that cleave the DNA at specific recognition sites. Restriction enzymes are also known as restriction endonucleases or restrictase.

Test: Recombinant DNA Technology - Question 6

The enzyme which cleaves DNA is _______

Detailed Solution for Test: Recombinant DNA Technology - Question 6

The enzyme which cleaves DNA is DNase. It catalyzes the breakdown of phosphodiester linkages of DNA. It is a type of endonuclease. Ligases are the enzymes used in the joining of two strands.

Test: Recombinant DNA Technology - Question 7

In recombinant DNA technology, what is the purpose of a bioreactor in the large-scale production of desired proteins?

Detailed Solution for Test: Recombinant DNA Technology - Question 7

A bioreactor is used to provide optimal conditions for cell growth, ensuring cells are in their physiologically most active phase.

Test: Recombinant DNA Technology - Question 8

The plant cells can be lysed by using ______ enzyme.

Detailed Solution for Test: Recombinant DNA Technology - Question 8

Cellulase is the enzyme used for the lysis of plant cells. It catalyzes cellulolysis, which is the breakdown of cellulose. Cellulase acts on the glycosidic linkages of cellulose. Cellulose is mostly found in plant cell walls along with other components.

Test: Recombinant DNA Technology - Question 9

What term is used to collectively refer to the separation and purification processes of a product in recombinant DNA technology?

Detailed Solution for Test: Recombinant DNA Technology - Question 9

Downstream processing involves the separation and purification of the product before it is ready for marketing.

Test: Recombinant DNA Technology - Question 10

A cloning vector has two antibiotic resistance genes- for tetracycline and ampicillin. A foreign DNA was inserted into the tetracycline gene. Non-recombinants would survive on the medium containing :

Detailed Solution for Test: Recombinant DNA Technology - Question 10
  • A cloning vector with two antibiotic resistance genes (for tetracycline and ampicillin) allows differentiation between recombinant and non-recombinant cells.
  • Foreign DNA insertion disrupts the tetracycline resistance gene, so recombinants lose resistance to tetracycline but retain resistance to ampicillin.
  • Non-recombinants (without foreign DNA insertion) retain both tetracycline and ampicillin resistance, allowing them to survive on a medium containing both antibiotics.
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