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NCERT Exemplar · Q28

Q.In case of polyembryony, if an embryo develops from the synergid and another from the nucellus which is haploid and which is diploid?

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In polyembryony, an embryo from the synergid is haploid (n), while an embryo from the nucellus is diploid (2n), reflecting the chromosome number of their parent cells.

Polyembryony — the formation of more than one embryo in a single seed — can arise through several routes, and understanding the ploidy of each embryo requires tracing it back to the cell that gave rise to it. The key principle is simple: the chromosome number of the embryo matches the chromosome number of the cell from which it develops.

The synergid is one of the three cells that make up the egg apparatus at the micropylar end of the embryo sac. Like the egg cell and the other synergid, it is a product of the megagametophyte — the female gametophyte that develops from the functional megaspore through mitotic divisions. Because the megaspore itself is haploid (formed by meiosis), every cell in the mature embryo sac, including the synergids, is haploid. When an embryo develops from a synergid without fertilization — a form of apomixis — it inherits the haploid chromosome number. This embryo is haploid (n).

The nucellus, by contrast, is part of the ovule's sporophytic tissue. It surrounds the embryo sac and is derived from the diploid tissue of the parent plant. Nucellar cells retain the full sporophytic chromosome complement. In some species, a nucellar cell can directly give rise to an embryo through a process called adventive embryony, bypassing fertilization entirely. Because the nucellar cell is diploid, the embryo it produces is also diploid. This embryo is diploid (2n). …

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