Q.The basic scheme of the essential steps involved in the process of recombinant DNA technology is summarised below in the form of a flow diagram. Study the given flow diagram and answer the questions that follow : Step-1 Plasmid DNA (cut using Restriction Enzyme EcoR I) + Foreign DNA (cut using Restriction Enzyme EcoR I) → [DNA ligase] Step-2 Recombinant DNA molecule Step-3 Transfer of recombinant DNA molecule to the host cell Step-4 Replication of recombinant DNA molecule in the host cell
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Start your 14-day free trial to unlock the full solution →The process described is the core of recombinant DNA technology, where a foreign gene is inserted into a plasmid vector using the same restriction enzyme to create complementary sticky ends, which are then sealed by DNA ligase.
Let us walk through this flow diagram step by step, as a teacher would in class. The diagram shows the classic method of making recombinant DNA: you take a plasmid (a small circular DNA from bacteria) and cut it open with a restriction enzyme. You also cut the foreign DNA (the gene you want to clone) with the same restriction enzyme. Then you mix them together, add DNA ligase, and the two pieces join to form a recombinant DNA molecule. This molecule is then transferred into a host cell, where it replicates.
Now, to your specific questions.
- Name the specific enzyme that might have been used to make the multiple copies of foreign DNA before undergoing Step-1 of the process.
Before Step-1, you need many copies of the foreign DNA so that you have enough material to work with. The enzyme that makes multiple copies of a specific DNA sequence in a test tube is Taq polymerase (or more generally, a DNA polymerase used in the polymerase chain reaction, PCR). However, the NCERT textbook specifically mentions Taq polymerase as the heat-stable enzyme used in PCR to amplify DNA. So the answer is Taq polymerase (or simply DNA polymerase if the question expects a general term, but Taq is the precise one from the NCERT context).
Note
PCR (polymerase chain reaction) is the technique that uses Taq polymerase to make millions of copies of a DNA segment in a few hours. This step is often done before cutting with restriction enzymes, to have enough foreign DNA for the ligation step.
- How does the use of restriction enzyme EcoR I in Step-1 facilitate the action of DNA ligase to form the recombinant DNA molecule? Explain. This is a beautiful point about how nature and technology work together. EcoR I is a restriction enzyme that cuts DNA at a specific sequence (GAATTC) and leaves sticky ends — short, single-stranded overhangs. When you cut both the plasmid and the foreign DNA with the same EcoR I, both pieces get complementary sticky ends. These sticky ends can base-pair with each other through hydrogen bonding, bringing the two DNA molecules close together in the correct orientation. …
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