meristem
Meristematic tissue is the only plant tissue that produces new cells in mitosis.
New plant cells are produced at the ends of roots in meristems, which are clusters of tissue that are responsible for continuing growth throughout a plant's lifetime. Note: The new cells produced in the meristem are undifferentiated. Reference(s): Texas Prentice Hall Biology Text Book.
Meristematic tissue is responsible for producing new plant cells through the process of cell division. Meristematic tissue is found in areas of active growth in plants, such as the tips of roots and shoots. It plays a crucial role in the development and regeneration of plant tissues.
Cambium is a layer of meristematic tissue found in between the xylem and phloem in vascular plants. It is responsible for the growth in diameter of the plant, producing new xylem and phloem cells. This process allows the plant to increase in girth and continue to transport water, nutrients, and sugars throughout the plant.
Meristems are regions of actively dividing cells in plants responsible for growth and development. They give rise to new cells that differentiate into various tissues, helping in the production of new leaves, stems, and roots. Meristems play a crucial role in plant growth, repair, and adaptation to environmental changes.
Cambium is the meristematic tissue responsible for adding width to the plant body. It is a lateral meristem located between the xylem and phloem in vascular plants. When the cambium divides, it produces new xylem cells towards the inside of the plant and new phloem cells towards the outside, contributing to the radial growth of the plant.
Meristem tissue is capable of cell division and differentiation in plants. This tissue helps in the growth and development of new plant cells and tissues.
The tissue in plants that contains stem cells is called meristematic tissue. This tissue is responsible for cell division and growth in plants, allowing for the formation of new tissues and organs. It is typically found at the tips of roots and shoots.
plant donor cells have the ability to regenerate a complete new plant from one single cell (irrespective of what type of cell is used); this is not the same as in animal cells where only cells of the same type (tissue) can be cultured from a donor cell
cork cambium, apical meristem, and vascular cambium.
Plant cells are totipotent because they have the ability to dedifferentiate and regenerate into a whole new plant through processes like tissue culture. Animal cells, on the other hand, have more limited capacity for dedifferentiation and regeneration, making them less totipotent compared to plant cells.
A soft connective tissue found in bones is marrow.