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The correct order of steps in Polymerase...

The correct order of steps in Polymerase Chain Reaction (PCR) is

A

Denaturation , Extension , Annealing

B

Annealing , Extension , Denaturation

C

Extension , Denaturation , Annealing

D

Denaturation , Annealing , Extension

Text Solution

Verified by Experts

The correct Answer is:
D

The Polymerase Chain Reaction (PCR) involves three basic steps , denaturation , annealing and extension . In the denaturation step , DNA is heated at high temperature `(94^(@)C ` to `96^(@)C`) to separate the two strands . In the next step (annealing ) , the two oligo-nucleotide primers anneal to each single - stranded template DNA.
This step is carried out at a lower temperature (`40^(@)C` to `60^(@)C`) . The final step is extension , where in Taq DNA polymerase synthesises the DNA region between the primers , using dNTPs (deoxynucleoside triphosphates) and `Mg^(2+)` ions.
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Knowledge Check

  • Polymerase chain reaction (PCR) is used for

    A
    In vivo replication of specific DNA sequence using thermostable DNA polymerase
    B
    In vitro synthesis of mRNA
    C
    In vivo synthesis of mRNA
    D
    Separation of DNA fragments according to their size.
  • The function of polymerase chain reaction (PCR) is

    A
    translation
    B
    transcription
    C
    DNA amplification
    D
    None of these
  • Polymerase chain reaction is useful in

    A
    Locating simple sequence repeats
    B
    Locating variable number of tandem repeats
    C
    Developing restriction maps
    D
    Amplification restriction maps
  • Similar Questions

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    In addition to Taq polymerase enzyme which other thermostable DNA polymerases have been isolated to be used in polymerase chain Reaction (PCR) ?

    Given figures represents the steps involved in polymerase chain reaction (PCR) . Identify the steps A,B,C and C and select the correct option.

    Polymerase chain reaction employs

    Enzyme required for polymerase chain reaction (PCR) is

    The denaturation process in polymerase chain Reaction (PCR) does not involve