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  2. Ground tissue - Wikipedia

    en.wikipedia.org/wiki/Ground_tissue

    This tissue system is present between the dermal tissue and forms the main bulk of the plant body. Parenchyma cells have thin primary walls and usually remain alive after they become mature. Parenchyma forms the "filler" tissue in the soft parts of plants, and is usually present in cortex , pericycle , pith , and medullary rays in primary stem ...

  3. Monocotyledon - Wikipedia

    en.wikipedia.org/wiki/Monocotyledon

    Collenchyma is absent in monocot stems, roots and leaves. Many monocots are herbaceous and do not have the ability to increase the width of a stem ( secondary growth ) via the same kind of vascular cambium found in non-monocot woody plants . [ 35 ]

  4. Secondary cell wall - Wikipedia

    en.wikipedia.org/wiki/Secondary_cell_wall

    The first lignified secondary walls evolved 430 million years ago, creating the structure necessary for vascular plants. The genes used to form the constituents of secondary cells walls have also been found in Physcomitrella patens. This suggests that a duplication of these genes was the driver of secondary cells wall formation. [2]

  5. Cortex (botany) - Wikipedia

    en.wikipedia.org/wiki/Cortex_(botany)

    Cross-section of a flax plant stem: 1. Pith 2. Protoxylem 3. Xylem I 4. Phloem I 5. Sclerenchyma 6. Cortex 7. Epidermis. In botany, a cortex is an outer layer of a stem or root in a vascular plant, lying below the epidermis but outside of the vascular bundles. [1]

  6. Pericycle - Wikipedia

    en.wikipedia.org/wiki/Pericycle

    It has been known to often be confused with other parts of the plant. However, its unique ring structure allows it to be more easily identified. [citation needed] Past efforts to isolate such tissue have been successful. Monocot roots rarely branch, but can, and this branch will originate from the pericycle. [citation needed]

  7. Plant stem - Wikipedia

    en.wikipedia.org/wiki/Plant_stem

    Vascular bundles are present throughout the monocot stem, although concentrated towards the outside. This differs from the dicot stem that has a ring of vascular bundles and often none in the center. The shoot apex in monocot stems is more elongated. Leaf sheathes grow up around it, protecting it. This is true to some extent of almost all monocots.

  8. Vascular cambium - Wikipedia

    en.wikipedia.org/wiki/Vascular_cambium

    Vascular cambia are found in all seed plants except for five angiosperm lineages which have independently lost it; Nymphaeales, Ceratophyllum, Nelumbo, Podostemaceae, and monocots. [1] In dicot and gymnosperm trees , the vascular cambium is the obvious line separating the bark and wood; they also have a cork cambium .

  9. Meristem - Wikipedia

    en.wikipedia.org/wiki/Meristem

    In monocots, the tunica determines the physical characteristics of the leaf edge and margin. In dicots , layer two of the corpus determines the characteristics of the edge of the leaf. The corpus and tunica play a critical part of the plant physical appearance as all plant cells are formed from the meristems.