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The linking of antibiotic resistance gen...

The linking of antibiotic resistance gene with the plasmid vector became possible with

A

DNA polymerase

B

Exonucleases

C

DNA ligase

D

Endonucleases

Text Solution

Verified by Experts

The correct Answer is:
C
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Which enzyme links the antibiotic resistance gene with the plasmid vector ?

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Knowledge Check

  • The linking of antiobiotic resistance gene with the plasmid vector became possible with

    A
    DNA polymerase
    B
    Exonucleases
    C
    DNA ligase
    D
    Endonucleases
  • The linking of antibiotic resistance gene with the plasmid vector becomes possible with the enzyme

    A
    DNA polymerase
    B
    DNA ligase
    C
    Restriction endonucleases
    D
    Polynucleotide kinase
  • A: DNA ligase plays an important role in recombinant DNA technology. R: The linking of antibiotic resistance gene with plasmid vector became possible by enzyme DNA ligase

    A
    If both Assertion & Reason are true and the reason is the correct explanation of the assertion
    B
    If both Assertion & Reason are true but the reason is not the correct explanation of the assertion
    C
    If Assertion is true statement but Reason is false
    D
    If both Assertion and Reason are false statements
  • Similar Questions

    Explore conceptually related problems

    Assertion : DNA ligase plays important role in recombinant DNA technology. Reason : The linking of antibiotic resistance gene with plasmid vector becomes possible by enzyme DNA ligase.

    The first recombinant DNA was constructed by linking an antibiotic resistant gene with the native plasmid of :

    The prokaryote that is credited with construction of the first recombinant DNA by linking an antibiotic resistance gene with its native plasmid is

    The first recombinant DNA was constructed by linking an antibiotic resistant gene with the native plasmid of

    Construction of first rDNA by linking a gene encoding antibiotic resistance gene with native plasmid of Salmonella typhimurium was done by: