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NCERT Exemplar · Q6

Q.A bivalent of meiosis-I consists of

(a) Two chromatids and one centromere
(b) Two chromatids and two centromere
(c) Four chromatids and two centromere
(d) Four chromatids and four centromere
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A bivalent is two paired homologous chromosomes, and since each homologue already carries two sister chromatids joined at one centromere, the whole bivalent works out to four chromatids and two centromeres.

A bivalent (or tetrad) is formed during zygotene of prophase I, when two homologous chromosomes — one inherited from each parent — come together through synapsis, aligning alongside each other and being held together by the synaptonemal complex. By the time pachytene is reached, each bivalent can clearly be seen to be resolved into its four chromatids, which is exactly why it is also called a tetrad.

To see why the count works out as it does, it helps to build it up piece by piece:

  • Meiosis begins after the parental chromosomes have already replicated during the S phase, so each individual chromosome entering prophase I already consists of two identical sister chromatids joined at a single centromere.
  • A bivalent brings together two such homologous chromosomes — not two chromatids, but two entire (already-duplicated) chromosomes.
  • That gives two chromosomes times two chromatids each, for a total of four chromatids in the bivalent. …

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