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Q.How many eggs are present in an embryo sac? How many embryo sacs are present in an ovule? How many ovules are present in an ovary? How many ovaries are present in a typical flower? How many flowers are present on a tree? And so on. Can you imagine agriculture in the absence of seeds, or in the presence of seeds which germinate straight away soon after formation and cannot be stored? Have you seen a tiny seed of Ficus? Can you imagine any other example in which such a tiny structure can produce such a large biomass over the years?

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This reflective passage multiplies small numbers at each level (one egg per embryo sac, several embryo sacs' worth of ovules per ovary, many ovaries per flower, many flowers per tree) to make the plant's enormous total reproductive output tangible, then connects it to two real-world points: why storable/dormant seeds matter for agriculture, and how a tiny seed (like Ficus) can produce a massive tree.

Working through the cascade (grounded in facts already established earlier in this chapter):

  • An embryo sac has 1 egg cell (§1.2.2's egg apparatus: 1 egg + 2 synergids).
  • An ovule generally has 1 embryo sac (§1.2.2: 'An ovule generally has a single embryo sac').
  • An ovary can hold 1 to very many ovules, depending on species (§1.2.2: single-ovule in wheat/paddy/mango, up to many in papaya/watermelon/orchids).
  • A flower can have one or many ovaries/carpels (monocarpellary vs. multicarpellary, §1.2.2), and a plant carries many flowers — in species like orchids, this compounds into the thousands of tiny seeds per fruit that §1.4.3 itself mentions.

The point of walking through this cascade is simply to make vivid just how large a flowering plant's total reproductive/seed output really is when you multiply every stage together — far larger than casually thinking of "a flower makes a seed" suggests. …

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