Q.Selaginella and Salvia are _______ pteridophytes.
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Heterospory in Pteridophytes
Imagine a plant that reproduces by spores. Most ferns you've seen release thousands of identical dust-like spores — each one is the same size, same shape, and has the same potential to grow into a tiny new plant. That's homospory (one kind of spore). Now picture a plant that makes two distinctly different types of spores: one tiny and numerous, the other large and few. That's heterospory — and it's a quiet revolution in plant evolution.
The Intuition: Why Two Kinds of Spores?
Think about what a spore needs to do: it must survive, germinate, and produce sex cells. A small spore is cheap to make — you can produce millions — but it carries very little food. A large spore is expensive, but it comes packed with nutrients, giving the next stage a head start. In a challenging environment, the large spore's offspring has a much better chance of surviving.
Heterospory is nature's way of specialising: the microspore (small, many) becomes the male, and the megaspore (large, few) becomes the female. This division of labour is the first step toward the seed.
The Precise Statement
Heterospory is the production of two morphologically different types of spores by the same plant: microspores (small, numerous) and megaspores (large, few in number). It occurs in certain pteridophytes like Selaginella and Salvinia, and in all seed plants.
The microspore germinates to form a male gametophyte (which produces sperm). The megaspore germinates to form a female gametophyte (which produces the egg). Crucially, the female gametophyte remains retained inside the megaspore wall — it never becomes free-living. This retention is the key evolutionary link to the seed habit.
How It Works in Selaginella (A Living Example)
In Selaginella (spike moss), a single cone-like structure called a strobilus bears two kinds of sporangia:
- Microsporangia — produce many tiny microspores.
- Megasporangia — produce usually just four large megaspores.
When released, the microspore germinates into a tiny male gametophyte that releases flagellated sperm. The megaspore germinates inside its own wall, producing a female gametophyte with archegonia (egg-bearing structures). The sperm swims to the megaspore, fertilises the egg, and the zygote develops into a new sporophyte — all while still nourished by the megaspore's food reserves.
In homosporous pteridophytes, the gametophyte is free-living and independent. In heterosporous ones, the female gametophyte is endosporic — it develops inside the spore wall, dependent on the stored food. This is a major shift.
Why It Matters: The Precursor to the Seed Habit
Heterospory alone is not the seed habit — but it sets the stage. A seed requires three things:
- Heterospory (microspores and megaspores)
- Retention of the megaspore within the megasporangium (it is not shed)
- Development of the embryo while still attached to the parent plant …
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