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Exercises · 10.23

Q.The two strands in DNA are not identical but are complementary. Explain.

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DNA strands are complementary, not identical, because base-pairing rules (A with T, G with C) force each strand to be a chemical mirror of the other — this ensures accurate replication and repair.

Why complementarity, not identity?

If the two strands of DNA were identical, every time a cell divided it would have to copy the exact same sequence twice — a recipe for chaos. Nature chose a smarter design: each strand acts as a template for the other. This is possible because of specific base pairing — adenine (A) always pairs with thymine (T), and guanine (G) always pairs with cytosine (C).

So if one strand reads 5'–A T G C–3', the other must read 3'–T A C G–5'. They are not the same; they are complementary. One is the reverse chemical image of the other.


Step-by-step reasoning

  1. Chemical structure forces pairing

    Each base has a specific hydrogen-bonding pattern. A forms two hydrogen bonds with T; G forms three with C. This is not a choice — it is dictated by molecular geometry. If a strand had an A, the opposite strand must have a T at that position, or the helix would not form stably.

  2. Directionality matters

    DNA strands run antiparallel: one goes 5' → 3', the other 3' → 5'. So complementarity includes both the base sequence and the strand orientation. If you write one strand in the 5' → 3' direction, the complementary strand in the 5' → 3' direction will read backwards — it is the reverse complement, not an identical copy.

  3. Example makes it concrete

    Take a short segment:

    • Strand 1 (5' → 3'): A – T – G – C
    • Strand 2 (3' → 5'): T – A – C – G If you flip strand 2 to write it 5' → 3', it becomes G – C – A – T. That is clearly not identical to strand 1. They are different sequences, but each can be used to rebuild the other.
  4. Biological consequence

    During replication, each strand serves as a template. If the strands were identical, a mistake on one would be copied identically to the other — no way to tell which was correct. With complementarity, a damaged base on one strand can be repaired using the undamaged complementary strand as a reference. This is the molecular basis of proofreading and repair.

Tip

Think of a photographic negative and its print. They are not identical — one is inverted — but each contains all the information needed to produce the other. DNA complementarity works the same way. …

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