Anatomy of Flowering PlantsClass 11 Biology Notes

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The Tissue System

The study of the internal structure of plants is called anatomy. Just like in animals, the basic unit of a plant is the cell. These cells group together to form tissues, which in turn are organized into organs like roots, stems, and leaves. The internal structure of these organs can vary significantly, especially between the two major groups of flowering plants: monocots and dicots. Plant anatomy also reveals fascinating adaptations to different environments.

Based on their structure and location within the plant, tissues are grouped into three main tissue systems:

  1. The Epidermal Tissue System
  2. The Ground or Fundamental Tissue System
  3. The Vascular or Conducting Tissue System

Epidermal Tissue System

The epidermal tissue system forms the complete outer covering of the plant's body. It acts like the plant's "skin" and includes three main components: epidermal cells, stomata, and epidermal appendages (trichomes and hairs).

  • Epidermis: This is the outermost layer of the primary plant body.

    • It's usually a single layer of elongated, compactly arranged cells that form a continuous sheet.
    • These cells are parenchymatous, meaning they have a thin cell wall, with a large central vacuole and a thin lining of cytoplasm.
    • The outside of the epidermis is often coated with a waxy, thick layer called the cuticle, which is crucial for preventing water loss. The cuticle is absent in roots.
  • Stomata: These are tiny pores found in the epidermis, especially on leaves.

    • Their main functions are to regulate transpiration (water loss) and allow for gaseous exchange (taking in CO₂ and releasing O₂).
    • Each stoma consists of a pore enclosed by two specialized cells called guard cells.
    • In most plants, guard cells are bean-shaped. In grasses, however, they are characteristically dumb-bell shaped.
    • The inner walls of the guard cells (facing the pore) are thick, while the outer walls are thin. This structural difference helps in the opening and closing of the pore.
    • Guard cells contain chloroplasts and actively control the size of the stomatal opening.
    • Sometimes, the epidermal cells surrounding the guard cells become specialized in shape and size. These are known as subsidiary cells.
    • The entire unit—comprising the stomatal pore, guard cells, and surrounding subsidiary cells—is called the stomatal apparatus.
  • Epidermal Appendages: These are outgrowths from the epidermal cells.

    • Root Hairs: These are unicellular extensions of epidermal cells on the root. Their primary job is to absorb water and minerals from the soil.
    • Trichomes: These are the hairs found on the stem and other parts of the shoot system.
      • They are usually multicellular.
      • They can be branched or unbranched, soft or stiff, and some may even be secretory (releasing substances).
      • A key function of trichomes is to help prevent water loss from transpiration.

The Ground Tissue System

The ground tissue includes all the tissues in a plant except for the epidermis and the vascular bundles. It makes up the main "bulk" of the plant body.

  • It is composed of simple tissues like parenchyma, collenchyma, and sclerenchyma.
  • In primary stems and roots, ground tissue is found in areas like the cortex, pericycle, pith, and medullary rays.
  • In leaves, the ground tissue is called mesophyll. It consists of thin-walled cells that contain chloroplasts and are the primary site of photosynthesis.

The Vascular Tissue System

The vascular tissue system is the plant's transportation network. It is made of complex tissues, primarily xylem and phloem, which are bundled together to form vascular bundles.

  • Xylem: Transports water and minerals from the roots to the rest of the plant.
  • Phloem: Transports food (sugars produced during photosynthesis) from the leaves to other parts of the plant.

The arrangement and type of vascular bundles differ between plant groups:

  • Open vs. Closed Vascular Bundles:

    • Open Vascular Bundles: Found in dicot stems. A layer of cambium is present between the xylem and phloem. This cambium is a meristematic tissue that allows for the formation of secondary xylem and phloem, leading to secondary growth (increase in girth).
    • Closed Vascular Bundles: Found in monocots. There is no cambium between the xylem and phloem. As a result, these plants cannot form secondary tissues and do not undergo secondary growth.
  • Arrangement of Vascular Bundles:

    • Radial Arrangement: Xylem and phloem are arranged in an alternating pattern on different radii (like spokes on a wheel). This arrangement is characteristic of roots.
    • Conjoint Arrangement: Xylem and phloem are situated together on the same radius. This is common in stems and leaves. In conjoint bundles, the phloem is typically located on the outer side of the xylem.