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  2. Absorption of water - Wikipedia

    en.wikipedia.org/wiki/Absorption_of_water

    Absorption of water-Plants generally absorb capillary water from the soil through their roots. The diffusion pressure deficit in a cell of a leaf is developed because of transpiration then water from the adjacent cell moves towards the cell in the same way diffusion pressure deficit is developed in the second cell and water moves to it from the ...

  3. Phreatophyte - Wikipedia

    en.wikipedia.org/wiki/Phreatophyte

    A phreatophyte is a deep-rooted plant that obtains a significant portion of the water that it needs from the phreatic zone (zone of saturation) or the capillary fringe above the phreatic zone. Phreatophytes are plants that are supplied with surface water and often have their roots constantly in touch with moisture.

  4. Xerophyte - Wikipedia

    en.wikipedia.org/wiki/Xerophyte

    Plants absorb water from the soil, which then evaporates from their shoots and leaves; this process is known as transpiration.If placed in a dry environment, a typical mesophytic plant would evaporate water faster than the rate of water uptake from the soil, leading to wilting and even death.

  5. The Worst Time to Water Indoor and Outdoor Plants ... - AOL

    www.aol.com/worst-time-water-indoor-outdoor...

    Plants absorb the most water during the morning hours. "Lower morning temperatures reduce evaporation, ensuring that more water penetrates the soil and is available to the roots," says Vazquez.

  6. Mesophyte - Wikipedia

    en.wikipedia.org/wiki/Mesophyte

    Mesophytes do not have any specific morphological adaptations. They usually have broad, flat and green leaves; an extensive fibrous root system to absorb water; and the ability to develop perennating organs such as corms, rhizomes and bulbs to store food and water for use during drought. [citation needed]

  7. Biomass partitioning - Wikipedia

    en.wikipedia.org/wiki/Biomass_partitioning

    Biomass partitioning is the process by which plants divide their energy among their leaves, stems, roots, and reproductive parts.These four main components of the plant have important morphological roles: leaves take in CO 2 and energy from the sun to create carbon compounds, stems grow above competitors to reach sunlight, roots absorb water and mineral nutrients from the soil while anchoring ...