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Q.What is the significance of Restriction Endonuclease and Reverse Transcriptase enzymes in Recombinant DNA Technology? What is Plasmid? (2+1) OR Mention three applications of plant biotechnology with examples.

West Bengal WbchseWest Bengal HS (WBCHSE) Board 2023Subjective· 3mImportance★★★★★
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Restriction endonucleases act as "molecular scissors" to cut DNA at precise sites, and reverse transcriptase converts mRNA into complementary DNA — both are essential tools for constructing recombinant DNA using a plasmid vector.

Restriction endonuclease: an enzyme that recognises and cuts double-stranded DNA at a specific, usually palindromic, base sequence (recognition site). In recombinant DNA technology it is used to:

  • Cut out the gene of interest from the source DNA.
  • Cut open the vector (e.g., a plasmid) at the same recognition site. Both cuts often generate complementary "sticky ends", allowing the gene of interest to be inserted into the opened vector and sealed by DNA ligase, forming recombinant DNA.

Reverse transcriptase: an enzyme (originally isolated from retroviruses) that synthesises a complementary DNA (cDNA) strand using an mRNA molecule as the template — essentially the reverse of normal transcription. This is important because eukaryotic genes contain introns, whereas bacterial hosts used for cloning cannot process/splice out introns; using reverse transcriptase on the mature (already spliced) mRNA yields an intron-free cDNA copy of the gene that can be directly expressed in a bacterial host.

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