Meristem cells are responsible for the production of tissues and organs. They have a lifelong ability to do so.
Bougainvillea is a vascular plant. It has specialized tissues that transport water and nutrients throughout the plant.
The pattern of lignin deposition determines the mechanical strength and water-conducting properties of plant tissues. It provides structural support to plant cells and helps in the transport of water and nutrients throughout the plant.
Grass is a vascular plant. This means it has specialized tissues that transport water and nutrients throughout its structure.
A walnut tree is vascular, meaning it has specialized tissues for transporting water and nutrients throughout the plant. The vascular system in plants consists of xylem for transporting water and minerals from the roots, and phloem for transporting sugars produced during photosynthesis.
Organs in animals are composed of different tissues serving specific functions, while in plants, organs are structures with distinct roles such as roots, stems, and leaves. Animal organs are typically more complex and involved in a wide range of physiological processes, while plant organs are more specialized for functions like photosynthesis, nutrient absorption, and support. Both animals and plants rely on their organs to carry out essential life functions and sustain their overall health and survival.
Tissues and organs in plants are produced through a process called cellular differentiation. Stem cells in the meristem region of plants continually divide and differentiate into various specialized cell types, forming tissues and organs. This process is tightly regulated by genetic and hormonal signals, allowing for the growth and development of plants throughout their life cycle.
leaves are organs of the plant
Plant tissues can be identified based on their structure, cell types, and functions. Common plant tissues include epidermis, parenchyma, collenchyma, and sclerenchyma. Plant organs such as roots, stems, and leaves can be distinguished by their specific structures and functions within the plant. Using a microscope to examine tissue samples and understanding plant anatomy can help in identifying different plant tissues and organs.
Sugar is carried away from leaves through the phloem tissues. The phloem is a specialized vascular tissue that transports sugars, nutrients, and signaling molecules throughout the plant. Specifically, sugars produced during photosynthesis in the leaves are transported to other parts of the plant, such as storage organs or growing tissues, through the phloem.
Vascular tissue is a type of complex tissue in plants that conducts water, minerals, and nutrients throughout the plant. It consists of xylem, which transports water and minerals from the roots to the rest of the plant, and phloem, which transports organic compounds produced by photosynthesis to various parts of the plant.
xylem and phloem
vascular!
Vascular tissues are plant tissues that transport nutrients and water throughout a plant. The two types of vascular tissues are xylem and phloem.
The correct sequence is: cells, tissues, organs, organ systems. Cells are the basic unit of life, which form tissues when grouped together. Tissues then form organs, and multiple organs working together make up an organ system.
tissues tissues
Vascular tissues in plants are made up of specialized cells called xylem and phloem. Xylem is responsible for transporting water and minerals upwards from the roots to the rest of the plant, while phloem transports sugars produced during photosynthesis throughout the plant. These tissues work together to support the growth and functioning of the plant.
Rhizome is an underground stem that possesses vascular tissues. These tissues aid in the transport of water, minerals, and nutrients throughout the plant.