Plant Tissue Systems – PST05210 Basic Pharmacognosy

NTA Level 5 • Semester 2 • PST05210

Plant Tissue Systems

Basic Pharmacognosy • Source Session/Topic 4
Full source-text version: all educational wording from the extracted learning source is retained; only presenter/tutor metadata and web-layout noise are removed, while formatting is improved for readability.

Session 4: Plant Tissue Systems

Total Session Time: 60 minutes

Prerequisites

• None

Learning Tasks

By the end of this session students are expected to be able to:

• Define Tissue Systems
• Categorize Tissue Systems
• Explain Tissue Systems

Resources Needed:

• Flip charts, marker pens, and masking tape
• Black/white board and chalk/whiteboard markers
• LCD projector and laptop

SESSION OVERVIEW

|Step |Time |Activity/ |Content |

| | |Method | |

|1 |05 minutes |Presentation |Introduction, Learning Tasks|

|2 |45 minutes |Presentation |Tissue Systems and their |

| | |Small group |Categorization |

| | |discussion | |

|3 |05 minutes |Presentation |Key Points |

|4 |05 minutes |Presentation |Evaluation |

SESSION CONTENTS

STEP 1: Presentation of Session Title and Learning Tasks (5 minutes)

READ or ASK students to read the learning objectives and clarify

ASK students if they have any questions before continuing.

STEP 2: Tissue Systems and Their Categorization (45 minutes)

|Activity: Small Group Discussion (15 minutes) |

| |

|Ask students to work in groups on the following question: |

|How do you categorize tissues system? |

| |

|ALLOW few students to respond |

| |

|WRITE their responses on the flip chart/board |

| |

|CLARIFY and SUMMARISE by using the content below |

• Tissue systems are groups of tissues performing a similar function

irrespective of its position in the plant body

• Tissues systems are:

o Dermal (Epidermal) tissue system,

o vascular tissue system and

o Fundamental (Ground) tissue system

o Epidermal Tissue System:

▪ In leaves there are guard cells
▪ Chloroplasts: present only in the guard cells of the

epidermis

▪ Other epidermal cells usually do not have chloroplasts
▪ Outer wall of epidermis is usually covered by cuticle
▪ The Stoma
• Stoma is a minute pore surrounded by 2 guard cells
• The stomata occur mainly in the epidermis of leaves
• Trichomes

o Are unicellular or multicellular appendages originating from the

epidermal cells

o Trichomes may be branched or unbranched

• Functions of Epidermal Tissue System

o Excessive loss of water due to the presence of cuticle

o Epidermis protects the underlying tissues

o Stomata are involved in transpiration and gaseous exchange

o Trichomes help dispersal of seeds and fruits

o Root hairs absorb water and mineral salts from the soil

• Vascular Tissue System

o Consists of xylem and phloem

o Elements of xylem and phloem are always organized in groups called

vascular bundles

o In dicot stems, the vascular bundle consists of cambial tissue in

between xylem and phloem (i.e. Open vascular bundle)

o In monocot stem, cambium is absent in the vascular bundle (i.e. closed

vascular bundle)

o In roots, xylem and phloem are arranged in an alternate manner on

different radii, this is called radial arrangement

o In stems and leaves, xylem and phloem are arranged at the same radius

and form a vascular bundle together (i.e. Conjoint vascular bundle)

o Conjoint vascular bundles may be;

▪ Collateral
• Xylem and phloem on same radius, phloem is outward
▪ Bicollateral
• Phloem on outer and inner sides of xylem

o Concentric vascular bundle

o Either phloem or xylem surrounds the other completely

o It is amphicribral if the phloem completely surrounds the xylem

o It is amphivasal if the xylem completely surrounds the phloem

• Ground or Fundamental Tissue System

o Form the main body of the plants (bulk of plant)

o Includes all the tissues except epidermis and vascular bundles

o In monocot stem, ground tissue system is a continuous mass of

parenchymatous tissue in which vascular bundles are found scattered

i.e. ground tissue is not differentiated into cortex, endodermis,

pericyclic and pith.

o In the leaves, ground tissue is made of chlorenchyma tissues forming

the mesophyll

o These cells are arranged in a single layer without intercellular spaces

o Cells in the pith generally store starch, fatty substances, tannins,

phenols, calcium oxalate crystals, etc.

• Secretory Tissues

o Cells or organizations of cells that produce a variety of secretions

o Secreted substance may remain deposited within secretory cell itself or

may be excreted (released from the cell)

o The substance maybe excreted to the surface of the plant or into

intercellular cavities or canals

o Some of the secretions are waste products e.g. resins, rubber, tannins

and various crystals

o Other secretions are useful in plants e.g. enzymes and hormones.

o Secretory structures may be single cells or group of cells (glands)

o Oil cells occur in ginger, pepper, mace, cardamoms, cinnamon and cassia

o The latex cells (produce latex) are found e.g. in Cannabis sativa

STEP 3: Key Points (5 minutes)

• Tissue systems are groups of tissues performing a similar function

irrespective of its position in the plant body

• Tissues systems are divided into dermal (epidermal) tissue system,

vascular tissue system and fundamental (Ground) tissue system

• Epidermal tissue system covers surfaces of the plant body
• Vascular tissue system forms the transport system of the plant
• The ground tissue system supports the vascular and the dermal tissue

systems

STEP 4: Evaluation (5 minutes)

• What are the functions of epidermal tissue system?
• What is the stoma?

References

Trease, G. E., Evans, W. C., & Evans, D. (2009). Trease and Evans

pharmacognosy. London: Saunders.

Joanne Barnes et al (2002), Herbal medicines 3rd Edition: Pharmaceutical

Press

Wallis, T. E. (2005). Textbook of pharmacognosy. New Delhi: CBS.

Robbers, J. E., Speedie, M. K., Tyler, V. E., & Tyler, V. E. (1996).

Pharmacognosy and pharmacobiotechnology. Baltimore: Williams &

Wilkins.

Heinrich, M., Kinghorn, A. D., Maizels, D., Gibbons, S., & Phillipson, J.

D. (2012). Fundamentals of pharmacognosy and phytotherapy. Edinburgh:

Churchill Livingstone/Elsevier.

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