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  2. Shade tolerance - Wikipedia

    en.wikipedia.org/wiki/Shade_tolerance

    In simple terms, shade-tolerant plants grow broader, thinner leaves to catch more sunlight relative to the cost of producing the leaf. Shade-tolerant plants are also usually adapted to make more use of soil nutrients than shade-intolerant plants. [2] A distinction may be made between "shade-tolerant" plants and "shade-loving" or sciophilous ...

  3. These Shade-Loving Plants Will Thrive No Matter Your ... - AOL

    www.aol.com/beautiful-perennials-love-shade...

    Don't blame the sun for your lack of a garden—these 30 shade-loving plants love the cool, covered spots in your yard and will bring vibrancy to your landscape.

  4. List of tree species by shade tolerance - Wikipedia

    en.wikipedia.org/wiki/List_of_tree_species_by...

    A list of tree species, grouped generally by biogeographic realm and specifically by bioregions, and shade tolerance. Shade-tolerant species are species that are able to thrive in the shade, and in the presence of natural competition by other plants. Shade-intolerant species require full sunlight and little or no competition.

  5. Shade (shadow) - Wikipedia

    en.wikipedia.org/wiki/Shade_(shadow)

    Full shade – less than two hours of direct sun per day. Under a dense forest canopy, light intensity can be very low. Special adaptations produce the shade tolerance that allows plants to survive in the understory. In addition, shade within a canopy can elicit shade avoidance responses whereby plants elongate their shoots in order to reach ...

  6. Shade avoidance - Wikipedia

    en.wikipedia.org/wiki/Shade_avoidance

    Shade avoidance is a set of responses that plants display when they are subjected to the shade of another plant. It often includes elongation , altered flowering time, increased apical dominance and altered partitioning of resources.

  7. Photosynthetic efficiency - Wikipedia

    en.wikipedia.org/wiki/Photosynthetic_efficiency

    28.2% (sunlight energy collected by chlorophyll) → 68% is lost in conversion of ATP and NADPH to d-glucose, leaving; 9% (collected as sugar) → 35–40% of sugar is recycled/consumed by the leaf in dark and photo-respiration, leaving; 5.4% net leaf efficiency. Many plants lose much of the remaining energy on growing roots.

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