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Q.Give an account of the tools of recombinant DNA technology.

Telangana TsbieTelangana Board of Intermediate Education 2020Subjective· 8mImportance★★★★★
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Recombinant DNA technology relies on four essential tools: restriction enzymes (molecular scissors), DNA ligase (molecular glue), vectors (DNA carriers), and a competent host cell to receive and express the recombinant DNA.

1. Restriction enzymes (restriction endonucleases): These are enzymes, e.g., EcoRI, HindIII, that recognize specific short palindromic DNA sequences (recognition sites) and cut the DNA at or near that site. They act as 'molecular scissors', cutting both the source (foreign) DNA and the vector DNA at the same specific site, often producing complementary 'sticky ends' that make it easier to join fragments from different sources together.

2. DNA ligase: After the desired DNA fragment (gene of interest) and the vector have both been cut with the same restriction enzyme, DNA ligase is used to join/seal the fragment into the vector by forming phosphodiester bonds — acting as 'molecular glue' to produce the final recombinant DNA molecule.

3. Vectors (cloning vectors): These are DNA molecules capable of independent replication that are used to carry the foreign gene of interest into a host cell and get it replicated/expressed there. Common vectors include:

  • Plasmids — small circular extra-chromosomal DNA of bacteria (e.g., pBR322), the most common cloning vectors.
  • Bacteriophages — viruses that infect bacteria, can also carry foreign DNA.
  • Cosmids — hybrid vectors combining plasmid and phage features, able to carry larger DNA inserts.
  • Binary vectors (e.g., the Ti plasmid of Agrobacterium tumefaciens) — used especially for introducing genes into plant cells. A good vector requires features such as an origin of replication (ori), a selectable marker gene (e.g., antibiotic resistance), and unique restriction sites for cloning. …

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