Meristematic tissue is the only plant tissue that produces new cells in mitosis.
Apical meristems produce new primary growth in plants, including new leaves, stems, and branches. They are responsible for the upward growth of the plant and play a key role in its development and overall structure.
Apical meristems are responsible for producing new buds, shoots, and leaves. Lateral meristems, such as vascular cambium in woody plants, can produce new root extensions and secondary growth in stems. This allows for the continuous growth and development of plants.
Meristem tissue is responsible for plant growth and development. It generates new cells for primary and secondary growth, allowing plants to grow in length and girth. Meristems also play a key role in repairing damage and regenerating tissues in plants.
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Meristems produce new cells for plant growth and development. These specialized tissues are responsible for generating all the above-ground and below-ground parts of a plant, including stems, leaves, and roots.
Apical meristems produce new primary growth in plants, including new leaves, stems, and branches. They are responsible for the upward growth of the plant and play a key role in its development and overall structure.
meristems :)
They are called meristems or apical meristems when they are located at the tips of roots.
The difference between apical meristems and lateral meristems are the location that they sprout buds on plants. Apical buds are present at the top of plants, while lateral buds are present at the base of plants.
it can also be found in lateral and intercalary meristems
Apical meristems are responsible for producing new buds, shoots, and leaves. Lateral meristems, such as vascular cambium in woody plants, can produce new root extensions and secondary growth in stems. This allows for the continuous growth and development of plants.
Plant tissues that produce new cells by mitosis are called meristems. Meristems are found at the tips of stems and roots, and they are responsible for the continuous growth of plants throughout their lifespan. Depending on their location, meristems can be classified as apical meristems (at the tips) or lateral meristems (on the sides).
Yes, apical meristems play a crucial role in primary growth in plants. Located at the tips of roots and shoots, they contain undifferentiated cells that divide and differentiate to produce new tissues. This growth allows the plant to increase in length, enabling it to reach for light and expand its root system for better nutrient and water absorption. Overall, apical meristems are essential for the vertical growth and development of plants.
Meristems are areas of cell division that are found at the tip of the stem and just behind the tip of the root of a plant. They provide the cells that are needed in plants to produce height. They also aid secondary stem growth by forming additional cells to increase width.
Apical meristems :- Apical meristems are present at the apices(tips) of roots and shoots. They are concerned with the extension of plant length. They cause increase in plant length, so, they play important role in primary growth.. Lateral meristems :- Lateral meristems are the meristems present in roots, stems and branches. In transverse section, there position is away from centre. Examples :- Vascular and Cork cambium Functions :- Concerned with secondary growth. Intercalary meristems :- These are the parts of apical meristems separated by sheet of permanent cells. These are situated at base of internodes in most plants. These meristems are responsible for production of new leaves and flowers 💐... Regardz Princeovpaghals
Similarities: They both have 2 types of stem cells Differences: Apical meristem increases length and lateral increases width whereas in animals they become specialized cells to increase the efficiency of the systems in the body. in plants apical and lateral meristems can differentiate into any kind of cell whereas in animals only embryonic stem cells can do that not tissue stem cells.
Meristems is the name of the specific areas where plant growth occurs.