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  2. C3 carbon fixation - Wikipedia

    en.wikipedia.org/wiki/C3_carbon_fixation

    C 4 and CAM plants have adaptations that allow them to survive in hot and dry areas, and they can therefore out-compete C 3 plants in these areas. The isotopic signature of C 3 plants shows higher degree of 13 C depletion than the C 4 plants, due to variation in fractionation of carbon isotopes in oxygenic photosynthesis across plant types.

  3. Photosystem - Wikipedia

    en.wikipedia.org/wiki/Photosystem

    In intense light, plants use various mechanisms to prevent damage to their photosystems. They are able to release some light energy as heat, but the excess light can also produce reactive oxygen species. While some of these can be detoxified by antioxidants, the remaining oxygen species will be detrimental to the photosystems of the plant. More ...

  4. Embryophyte - Wikipedia

    en.wikipedia.org/wiki/Embryophyte

    The embryophytes (/ ˈ ɛ m b r i ə ˌ f aɪ t s /) are a clade of plants, also known as Embryophyta (/ ˌ ɛ m b r i ˈ ɒ f ə t ə,-oʊ ˈ f aɪ t ə /) or land plants.They are the most familiar group of photoautotrophs that make up the vegetation on Earth's dry lands and wetlands.

  5. Photosynthesis - Wikipedia

    en.wikipedia.org/wiki/Photosynthesis

    The efficiency of both light and dark reactions can be measured, but the relationship between the two can be complex. For example, the light reaction creates ATP and NADPH energy molecules, which C 3 plants can use for carbon fixation or photorespiration. [44] Electrons may also flow to other electron sinks.

  6. Plant development - Wikipedia

    en.wikipedia.org/wiki/Plant_development

    On top of the gradual growth of the plant, the image reveals the true meaning of phototropism and cell elongation, meaning the light energy from the sun is causing the growing plant to bend towards the light aka elongate. Plant growth and development are mediated by specific plant hormones and plant growth regulators (PGRs) (Ross et al. 1983). [10]

  7. Plant reproduction - Wikipedia

    en.wikipedia.org/wiki/Plant_reproduction

    One of the outcomes of plant reproduction is the generation of seeds, spores, and fruits [13] that allow plants to move to new locations or new habitats. [14] Plants do not have nervous systems or any will for their actions. Even so, scientists are able to observe mechanisms that help their offspring thrive as they grow.

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  9. Photoblasticism - Wikipedia

    en.wikipedia.org/wiki/Photoblasticism

    When red light is present, PHYB is converted to its active form and moves from the cytoplasm to the nucleus where it upregulates the degradation of PIF1. PIF1, phytochrome-interaction-factor-1, negatively regulates germination by increasing the expression of proteins that repress the synthesis of gibberellin (GA), a major hormone in the ...