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Q.Write in detail the process of semiconservative replication of DNA. OR Match Column A with Column B: [1x5] Column-A:

(a) Yeast
(b) Use and disuse of organs
(c) Vector
(d) Light
(e) Azotobacter. Column-B:
(i) Plasmid
(ii) Nitrogen fixation
(iii) Budding
(iv) Lamarck
(v) Abiotic of factors.
Jharkhand JacJAC Intermediate Board 2020Subjective· 5mImportance★★★★★
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In semiconservative replication, the DNA double helix separates into its two strands, and each old (parental) strand serves as a template to build a new complementary strand, so every daughter DNA molecule ends up with one original strand and one brand-new strand.

Process of semiconservative DNA replication:

  1. Initiation: replication begins at specific points on the DNA called origins of replication, where the enzyme helicase unwinds and separates (unzips) the two strands of the parental double helix by breaking the hydrogen bonds between base pairs, forming a Y-shaped replication fork. Single-strand binding proteins stabilise the separated strands and prevent them from re-annealing.

  2. Priming: since DNA polymerase cannot start a new strand from scratch, the enzyme primase synthesises a short RNA primer complementary to the template strand, providing a free 3'-OH end to begin synthesis.

  3. Elongation: DNA polymerase III adds new deoxyribonucleotides one at a time to the growing strand, always in the 5' to 3' direction, pairing each new base with its complementary base on the template strand (A with T, G with C) according to the base-pairing rule.

  • Because the two parental strands are antiparallel, and DNA polymerase can only synthesise in the 5'->3' direction, one new strand (the leading strand) is synthesised continuously in the same direction as the replication fork opens, while the other new strand (the lagging strand) is synthesised discontinuously, in short segments called Okazaki fragments, which are later joined together.

  1. Joining fragments: the enzyme DNA ligase seals the gaps between Okazaki fragments (after RNA primers are removed and replaced with DNA by DNA polymerase I), forming a continuous new strand. …

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