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Q.Give an account of recombinant DNA technology.

Odisha ChseOdisha CHSE +2 Science Board Exam 2026Subjective· 5mImportance★★★★★
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Recombinant DNA technology genetically engineers a new DNA molecule by cutting and joining DNA from different sources, then inserts it into a host cell to multiply and express the foreign gene, using enzymes, vectors, and selection/screening steps.

Recombinant DNA (rDNA) technology, also called genetic engineering, is the set of techniques used to isolate a gene of interest, combine it with a carrier (vector) DNA molecule, and introduce this recombinant construct into a suitable host organism so that it can be replicated and its product expressed. The essential steps are:

  1. Isolation of the desired DNA/gene: the gene of interest (or total genomic/complementary DNA) is isolated from the source cell and purified, using techniques such as centrifugation and precipitation to separate DNA from other cell components.
  2. Cutting of DNA with restriction enzymes: sequence-specific restriction endonucleases ("molecular scissors") are used to cut both the source DNA (to excise the gene of interest) and the vector DNA at specific recognition sites, generating fragments with complementary (often "sticky") ends.
  3. Amplification (if needed): the gene fragment may first be amplified using the Polymerase Chain Reaction (PCR) to obtain sufficient copies for downstream steps.
  4. Ligation into a vector: the cut gene fragment is joined (ligated) to a similarly cut cloning vector (a plasmid or bacteriophage) using the enzyme DNA ligase, which seals the sugar-phosphate backbone, forming a new recombinant DNA molecule.
  5. Transformation - introducing rDNA into a host cell: the recombinant DNA is introduced into a suitable host cell (commonly bacteria such as E. coli, or yeast/plant/animal cells) using methods such as heat-shock treatment (with CaCl₂-treated competent cells), electroporation, microinjection, or biolistic (gene gun) methods, and in plants often via the Agrobacterium tumefaciens Ti-plasmid system.
  6. Selection of transformed host cells: because not every host cell takes up the vector, selectable marker genes on the vector (commonly antibiotic resistance genes) are used to identify and select only those cells that were successfully transformed, discarding non-transformants. …

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