Q.(a) Identify steps A and B in a cycle of Polymerase Chain Reaction given below.
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Start your 14-day free trial to unlock the full solution →PCR involves three temperature-dependent steps in each cycle: denaturation (separating DNA strands), annealing (primers binding), and extension (new DNA synthesis by the thermostable enzyme Taq polymerase). In this question, Step A is denaturation and Step B is extension — the step "carried" by the enzyme, whose defining characteristic is thermostability.
The Polymerase Chain Reaction (PCR) is a powerful technique used to amplify a specific DNA segment, creating millions of copies from a single template molecule. This process occurs in a cyclic manner, with each cycle typically involving three distinct temperature-dependent steps: denaturation, annealing, and extension.
(a) Identifying Steps A and B
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Step A: Denaturation
This is the first step in each PCR cycle, where the reaction mixture is heated to a high temperature, typically around 94-96°C. At this temperature, the hydrogen bonds holding the two strands of the double-stranded DNA template together break, causing the DNA to unwind and separate into single strands. This separation is essential because DNA polymerase can only synthesise new DNA using a single-stranded template.
NoteBetween denaturation and extension lies a second step, annealing (not asked here as A or B): the temperature is lowered to about 50-60°C, and short synthetic primers bind (anneal) to their complementary sequences on the separated template strands, providing the free 3'-OH end that DNA polymerase needs to begin synthesis.
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Step B: Extension
Following annealing, the temperature is raised again, typically to around 72°C — the optimum for the enzyme used. In this step, the enzyme synthesises a new complementary DNA strand by adding nucleotides one by one to the 3'-OH end of each annealed primer, extending it along the template. This duplicates the target DNA segment.
(b) Specific Characteristic Feature of the Enzyme in Carrying Step B
The enzyme that carries out step B (extension) is Taq DNA polymerase, and its defining characteristic feature is its thermostability. …
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