Microbiology, Parasitology & Entomology – By the end of this session, students are expected to be able to:
Read the complete lesson in an organized slide-by-slide format. This topic contains 24 learning sections from the source presentation.
LESSON CONTENTS — 24 SECTIONS
Session 2:Bacteria Cell Structure and Classification
Learning Objectives
By the end of this session, students are expected to be able to:
- Define the terms bacteriology, prokaryotic cell, eukaryotic cell and bacteria
- Describe the characteristics of a prokaryotic cell
- Describe structure and functions of each part of a bacterial cell
- Compare prokaryotic cells and eukaryotic cells
- Classify bacteria according to various criteria
Definitions of Terms
Bacteriology: Is the study of bacteria.
Prokaryotic cells: Are simple unicellular organism without a distinct nucleus and other specialized cell structures. Example of prokaryotic cell is bacterial cell.
Eukaryotic cells: Are cells that contain nucleus, a sack like structure that encloses a cell’s genetic materials. The presence of nucleus differentiates eukaryotic cell from prokaryotic cell.
Bacteria: Are unicellular free living organisms without chlorophyll having both DNA and RNA. They are capable of performing all essential processes of life example growth, metabolism and reproduction
Characteristics of Prokaryotic Cells
The genetic material (DNA, RNA) of prokaryotic cells is not membrane-bounded
Prokaryotes have no true nucleus and other membrane-bound structures known as organelles.
They normally possess just a single chromosome that is separated from other cell contents by a membrane.
The characteristics of prokaryotic cells apply to the bacteria, cyanobacteria (formerly known as blue-green algae) and archaebacteria.
Structure of Bacterial Cell and Function of each Part
Parts of a Bacterial Cell and their Functions
Bacterial cell is comprised of the following parts
Cell wall
Capsule
Flagella
Pilli (Fimbriae)
BACTERIAL CELL
Cont..
Cytoplasmic/Plasma membrane
Mesosomes
Cytoplasm
Ribosomes
Nucleoid material (DNA and RNA)
Not all bacteria possess all of these components
Cont.
Cont…
Major Similarities between Prokaryotes and Eukaryotes
They both have DNA and RNA as their genetic material
They are both membrane bound
They both have ribosomes
They have similar basic metabolism
They are both diverse groups
Cont…
Classification of Bacteria
Bacteria are classified according to a number of criteria which include
Morphology
Staining characteristics
Nature of cell wall
Ability to form spores
Ability to grow in the presence or absence of oxygen
Classification of Bacteria According to Morphology/Shape
Cocci: These are round or oval shaped bacteria. When multiplying cocci may form
Pairs (called diplococci for example meningococci and gonococci)
Chains (called streptococci example Streptococcus pyogenes)
Irregular groups or clusters (called staphylococci, example is staphylococcus aureus)
Bacilli: These are rod shaped bacteria. When multiplying bacterial rods do not usually remain attached to one another, but separate. Occasionally however, they may form
Chains, example are Streptobacilli
Branching chains, example are Lactobacilli
Mass together; example is Mycobacterium leprae
Cont…
Remains attached at various angles example Corynebacterium diphtheria
Spiral: These are small regularly coiled, rigid organisms. Examples Spirillum minus
Comma shaped: These are small slightly curved rods (comma shaped). Example Vibrio cholera
Spirochaetes: These are flexible, coiled, motile organisms they progress by rapid body movement. Example, treponema species, borrelia species, and leptospires
Classification of Bacteria according to Staining Characteristics.
Gram positive: When stained by Gram stain, appears blue reflecting the colour of primary stain (either gentian violet, crystal violet or methyl violet). Examples, Staphylococci species, Streptoccoci species. Clostridium tetani.
Gram negative bacteria are bacteria which appears red, after losing the colour of primary stain and adapting the colour of a counter stain (dilute carbofuchsin or safranin, or neutral red) when stained by gram stain
Examples, neisseria species, salmonella species, haemophilus species
Classification of Bacteria according to Nature of Cell Wall
Rigid thick wall for examples streptococcus, staphylococcus
Wall less for example Mycoplasma
Classification of Bacteria according to Ability to Form Spores
Spores are highly resistant dormant state of bacteria with dense thick walls able to withstand dehydration heat, cold and action of disinfectants.
In this kind of classification there are
Spore forming bacteria for examples bacillus species and clostridium species
Non spore forming bacteria for examples corynebacteria species like corynebactrium diphtheria
Classification of Bacteria according to Ability to Grow in the Presence or Absence ofAir
Grows in the presence of air (aerobic bacteria) for example bacillus anthracis
Grows in the absence of air (anaerobic bacteria) for example clostridium species
STRUCTURE OF EUKARYOTIC CELL
Classification of bacteria according to the morphology
Cont…
Key Points (5 minutes)
Bacteria fall under the group of prokaryotic cells which are simple cells as compared to eukaryotic cells.
Absence of the membranes to bind the internal organelle structures in the prokaryotes makes the major difference with the eukaryotic cells.
Bacteria are classified based on their morphology, staining characteristics, nature of cell wall, ability to form spores and ability to grow in the presence or absence of oxygen
Evaluation
What are the structural features of bacterial cell?
What are the differences between prokaryotic cell and eukaryotic cell?
What are the 5 criteria for classification of bacteria and give examples?
REFERENCES
- Arabslab. (2010). The Morphology and Fine Structure of Bacteria. Retrieved on 16th March 2010 from www.arabslab.com/vb/showthread.php?t=577.
- Becker, F.J. & Silverton, R.E. (1985). Introduction to Medical Laboratory Technology (6th ed.). London: Butterworth.
- Fox, A. (2010). Bacteriology – Chapter One, the Bacterial Cell. Microbiology and Immunology. University of South Carolina School of Medicine. Retrieved on 16th March 2010 from pathmicro.med.sc.edu/fox/protype.htm.
- Greenwood, D., Richard, C.B.S. & John, F.P. (1992). Medical Microbiology (4th ed.). Hong Kong: ELBS with Churchill Livingstone, Medical Division of Longman Group, UK Ltd.
- Jawetz, Melnick, & Adelberg’s. (2007). Medical Microbiology (24th ed.). USA: The McGraw-Hill Companies, Inc.
Cont..
Levinson, W. (2004). Medical Microbiology and Immunology. Examination & Board, (8th ed.). New York: International Edition Lange Medical Books /McGraw Hill Medical Publishing & Davson.
Michael W. Davidson (2004). Anatomy of the Animal Cell. Retrieved on 16th March 2010 from http://micro.magnet.fsu.edu/cells/animals/animalmodel.html.
Monica, C. (1987). Medical Laboratory Manual for Tropical Countries. Volume 1 (2nd ed.). Oxford: ELBS Butterworth, Heinemann Ltd.
Monica, C. (1998). District Laboratory Practice in Tropical Countries. Part 1. Tropical Health Technology. Noida, India: Gapson Papers Ltd.
Monica, C. (2000). District Laboratory Practice in Tropical Countries. Part 2. Tropical Health Technology. UK: Cambridge University Press.
Satish, G. (1982). The Short Handbook of Medical Microbiology. New Delhi. India: Jaypee Brothers Medical Publishers PVT Lt
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