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Q.Explain the process of DNA replication with the help of suitable diagrams.

Jharkhand JacJAC Intermediate Board 2023Subjective· 5mImportance★★★★★
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DNA replicates semiconservatively — each of the two new DNA molecules retains one original (parental) strand and gains one newly synthesised strand — achieved via a replication fork where enzymes unwind the helix and DNA polymerase builds new strands using each old strand as template.

DNA replication is the process by which a DNA molecule produces two identical copies of itself before cell division, ensuring genetic continuity. It follows the semiconservative model (proposed by Watson and Crick, and experimentally confirmed by Meselson and Stahl using E. coli grown in heavy (15N) then light (14N) nitrogen media, tracked by density-gradient centrifugation): each daughter DNA molecule consists of one strand from the original (parental) molecule and one newly synthesised strand.

Key steps (imagine a diagram of the replication fork — an unwound Y-shaped region of DNA):

  1. Initiation: Replication begins at a specific site called the origin of replication, where the enzyme helicase unwinds and separates the two DNA strands, breaking the hydrogen bonds between base pairs and creating a Y-shaped replication fork. Single-strand binding proteins stabilise the separated strands, and topoisomerase relieves the supercoiling/tension ahead of the fork.
  2. Priming: Because DNA polymerase cannot start a new chain from scratch, a short RNA primer is laid down by the enzyme primase to provide a free 3'-OH end for DNA polymerase to extend.
  3. Elongation: DNA polymerase III synthesises the new strand by adding nucleotides complementary to the template strand, always in the 5'→3' direction. Because the two parental strands run antiparallel, one new strand (the leading strand) is synthesised continuously in the same direction as fork movement, while the other (the lagging strand) is synthesised discontinuously, in short stretches called Okazaki fragments, each requiring its own RNA primer. …

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