NCERT Exemplar · Q26
Q.With the help of a schematic diagram describe the haplo-diplontic life cycle pattern of a plant group.
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Start your 14-day free trial to unlock the full solution →A haplo-diplontic cycle alternates two multicellular generations -- a haploid gametophyte and a diploid sporophyte -- connected by fertilisation and meiosis.
Since a drawn diagram cannot be produced here, the pattern is described stage by stage, as it would appear in a schematic cycle diagram, taking a bryophyte as the representative example.
- A haploid spore, produced by an earlier round of meiosis, germinates and divides repeatedly by mitosis to build up a multicellular, free-living gametophyte. In a bryophyte this gametophyte is the dominant, photosynthetic plant body.
- The gametophyte differentiates sex organs -- an antheridium producing motile male gametes and an archegonium holding a single egg -- both of which arise by mitosis and so remain haploid.
- The male gamete travels through a film of water to the egg, and the two fuse in fertilisation to form a diploid zygote.
- The zygote grows by mitosis into a second, multicellular structure, the sporophyte. In a bryophyte this sporophyte stays attached to, and dependent on, the gametophyte, though in pteridophytes and seed plants the sporophyte instead becomes the dominant, independent generation.
- Inside a sporangium (the capsule, in a bryophyte), certain sporophyte cells undergo meiosis, restoring the haploid number and producing spores once again. …
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