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NCERT Exemplar · Q28

Q.During reproduction, the chromosome number (2n) reduces to half (n) in the gametes and again the original number (2n) is restored in the offspring. What are the processes through which these events take place?

Ladakh CbseShort· 2mImportance★★★★★
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Meiosis reduces the chromosome number from diploid (2n) to haploid (n) during gamete formation, and fertilisation restores the diploid number (2n) in the offspring by fusing two haploid gametes.

The continuity of chromosome number across generations is one of the most elegant features of sexual reproduction. Every species maintains a characteristic chromosome count — humans have 46, fruit flies have 8, garden peas have 14 — and this constancy must be preserved even as organisms reproduce. If gametes carried the full diploid number, the chromosome count would double with every generation, quickly spiralling into chaos. Nature solves this problem through two complementary processes that work in tandem.

Meiosis is the reductional division that halves the chromosome number. When germ cells in the reproductive organs prepare to form gametes, they undergo this special type of cell division. Unlike mitosis, which produces two identical diploid daughter cells, meiosis involves two successive divisions — meiosis I and meiosis II — but only one round of DNA replication. The result is four haploid cells, each carrying exactly half the chromosome number of the parent cell.

The reduction happens specifically during meiosis I. Homologous chromosomes — the maternal and paternal copies of each chromosome — pair up and then separate into different daughter cells. This is fundamentally different from mitosis, where sister chromatids separate. By the end of meiosis I, each cell has only one chromosome from each homologous pair, making it haploid. Meiosis II then resembles mitosis, separating sister chromatids, but because the cells are already haploid, the four final gametes remain haploid.

Important

Meiosis occurs only in germ cells (cells in the testes and ovaries that give rise to gametes), not in somatic cells. This is why your skin cells, liver cells, and muscle cells all remain diploid throughout your life. …

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