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Q.a) Differentiate Endonucleases and Exonucleases.

(2)
b) Diagramatically represent recombinant D.N.A. technology. (3)
Karnataka PUCKarnataka II PUC Board 2020Subjective· 5mImportance★★★★★
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(a) Endonucleases cut DNA internally at specific sites; exonucleases remove nucleotides from the ends. (b) rDNA technology: cut vector + foreign DNA with the same restriction endonuclease → ligate with DNA ligase → recombinant DNA → transform into a host → clone → get the product.

(a) Endonucleases vs Exonucleases (2 marks):

FeatureEndonucleaseExonuclease
Site of cuttingCuts at specific sites within (interior of) the DNA moleculeRemoves nucleotides from the ends (terminal, 5′ or 3′) of the DNA
ModeMakes internal cuts; restriction endonucleases recognise specific palindromic sequencesRemoves nucleotides sequentially, one at a time, from a free end
Use in rDNA techRestriction endonucleases produce the fragments/sticky ends used for cloningUsed to trim ends / degrade DNA from the terminus

(b) Recombinant DNA technology — steps (3 marks; as drawn):

  1. Cutting (isolation of the gene of interest and the vector): both the foreign/donor DNA (with the desired gene) and the plasmid vector are cut using the same restriction endonuclease (e.g. EcoRI), which produces complementary sticky ends.
  2. Joining (ligation): the foreign DNA fragment is inserted into the cut plasmid, and the two are sealed together with the enzyme DNA ligase, forming a recombinant DNA (rDNA) molecule.
  3. Introduction into the host: the recombinant DNA is introduced into a suitable host cell/bacterium (e.g. E. coli) — the host is made 'competent' to take up DNA (transformation). …

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