Q.Describe the anatomical adaptations of hydrophytes.
[!ANSWER] Internally, hydrophytes show a set of anatomical adaptations that all follow from being permanently surrounded by water.
The most distinctive internal feature is a well-developed system of large air spaces running through the cortex and other tissues, called aerenchyma. This spongy tissue serves two purposes: it gives the plant buoyancy, keeping it afloat or upright in water, and it allows oxygen and carbon dioxide to diffuse internally between organs, compensating for the very limited direct gas exchange with the open atmosphere underwater.
Hydrophytes also show markedly reduced xylem. Since every submerged cell is bathed in water and can absorb water and minerals directly across its own surface, there is little need for an extensive internal system to conduct water upward from the roots, as in an ordinary land plant, so the xylem tissue is much less developed.
For a similar reason, mechanical (supporting) tissue such as sclerenchyma and collenchyma is poorly developed. On land, a plant needs strong supporting tissue to stay upright against gravity and wind; in water, the surrounding medium itself buoys up and supports the plant body, so little structural reinforcement is required.
Finally, the epidermis is thin, often without a protective cuticle, and is directly capable of absorbing dissolved gases and nutrients from the surrounding water, functioning almost like an extension of the root system found in land plants.
[!ANSWER] In summary, the anatomical adaptations of hydrophytes are: well-developed aerenchyma, reduced xylem, reduced mechanical tissue, and a thin, directly-absorptive epidermis.
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