🦠 Microbiology introductory Lesson 1 of 4 3 min read

Introduction to Microorganisms

A survey of the microbial world—bacteria, viruses, fungi, protozoa, and helminths—and the difference between the microbes that keep us healthy and those that cause disease.

Reading level

What you'll learn

  • Identify the five major groups of microorganisms and give an example of each.
  • Distinguish prokaryotic cells from eukaryotic cells by their key structural features.
  • Explain what the normal flora (microbiome) is and why it matters for health.
  • Differentiate a pathogen from a commensal and define opportunistic infection.

Overview

Microbiology is the study of living things too small to see with the naked eye. These microorganisms are everywhere—in soil and water, on our skin, and lining our gut. The vast majority are harmless or even helpful; only a small fraction cause disease. Understanding who is who is the foundation of infection control, antibiotic use, and modern medicine.

The Microbial World

Microbiologists group the organisms they study into several major categories.

GroupCell typeKey featuresExample
BacteriaProkaryoteSingle-celled, no nucleus, cell wallEscherichia coli, Streptococcus
VirusesAcellularGenetic material in a protein coat; not truly alive on their ownInfluenza, HIV, SARS-CoV-2
FungiEukaryoteYeasts and molds; have cell walls of chitinCandida, athlete’s foot
ProtozoaEukaryoteSingle-celled, often motilePlasmodium (malaria), Giardia
HelminthsEukaryoteMulticellular parasitic wormsTapeworm, roundworm

Bacteria are single-celled and astonishingly abundant. Fungi include single-celled yeasts and filamentous molds. Protozoa are single-celled but more complex, and many move actively through water or blood. Helminths are not microscopic as adults, but their eggs and larvae are, and they are studied within microbiology because they cause infectious disease. Viruses stand apart: they are not cells at all and cannot reproduce without hijacking a host.

Prokaryotes vs. Eukaryotes

The single most important distinction in cell biology divides all cellular life into two types.

FeatureProkaryoteEukaryote
NucleusAbsent (DNA floats free)Present (membrane-bound)
Membrane-bound organellesAbsentPresent
Typical size1–10 micrometers10–100 micrometers
ExamplesBacteria, archaeaFungi, protozoa, human cells

A prokaryote keeps its DNA loose in the cytoplasm and has no internal compartments. A eukaryote packages its DNA inside a true nucleus and contains organelles such as mitochondria. This difference is not just academic: because bacterial cells are built so differently from ours, many antibiotics can attack a bacterium while leaving human cells unharmed.

Normal Flora and the Microbiome

You are never sterile. Trillions of microbes—collectively the normal flora or microbiome—colonize your skin, mouth, gut, and other surfaces. Far from being invaders, these organisms:

  • Compete with dangerous microbes for space and nutrients (colonization resistance)
  • Aid digestion and synthesize vitamins such as vitamin K and some B vitamins
  • Train the immune system to recognize threats

Disrupting this community—for example, with broad-spectrum antibiotics—can let harmful organisms overgrow, which is one reason Clostridioides difficile diarrhea often follows antibiotic treatment.

Pathogens, Commensals, and Opportunists

Whether a microbe harms you depends on both the organism and the host.

  • A pathogen is a microbe that can cause disease.
  • A commensal lives with the host without causing harm; most normal flora are commensals.
  • An opportunistic pathogen is usually harmless but causes infection when defenses fall—after surgery, during chemotherapy, or in HIV/AIDS.

Virulence describes how severe a pathogen’s effects are, and depends on tools such as toxins, enzymes, and the ability to evade the immune system. Infectivity describes how easily it establishes itself in a host.

Clinical Relevance

For anyone heading toward EMT, nursing, or medical work, this framework guides real decisions. Recognizing that a patient’s illness is bacterial, viral, fungal, or parasitic determines whether an antibiotic, an antiviral, or an antiparasitic is appropriate—and prevents the useless, harmful practice of giving antibiotics for viral colds. Knowing that normal flora protect us explains why we avoid unnecessary antibiotics, and knowing that opportunists strike weakened hosts explains why immunocompromised patients need extra protection from infection. Every later topic in microbiology builds on this map of the microbial world.

Going deeper advanced

Extra depth for when you're ready — expanded automatically in Advanced mode.

Taxonomy versus clinical grouping

Formal taxonomy classifies microbes by evolutionary relationships and genetics, but clinical microbiology often groups organisms by practical features such as Gram reaction, oxygen requirement, or the body site and disease they cause. A single genus can therefore span very different clinical behaviors, and unrelated organisms may be lumped together because they present similarly. Recognizing that the map used at the bedside is not the same as the evolutionary tree helps explain why identification schemes look the way they do.

The microbiome and biofilms

The human microbiome is now understood as an active partner in health, contributing to metabolism, vitamin synthesis, immune development, and colonization resistance against pathogens. Many resident and pathogenic microbes also live within biofilms, structured communities encased in a self-produced matrix that adheres to surfaces such as teeth, catheters, and prosthetic devices. Biofilms shelter their members from immune attack and antimicrobials, which is one reason device-associated and chronic infections are notoriously difficult to clear.

Key terms

Microorganism
A living thing too small to see with the naked eye, such as a bacterium, protozoan, or fungus; viruses are usually studied alongside them.
Prokaryote
A cell that lacks a membrane-bound nucleus and organelles, including all bacteria and archaea.
Eukaryote
A cell with a true membrane-bound nucleus and organelles, including fungi, protozoa, plants, and animals.
Pathogen
A microorganism capable of causing disease in a host.
Commensal
A microorganism that lives on or in a host without causing harm, and often provides benefit.
Normal flora
The community of microorganisms that normally lives on the skin and mucous membranes of a healthy person; also called the microbiome.
Opportunistic infection
An infection caused by an organism that is usually harmless but becomes pathogenic when host defenses are weakened.
Helminth
A parasitic worm, such as a tapeworm or roundworm, that can infect humans.

Check your understanding

5 questions · answers reveal instantly.

  1. 1.Which group of microorganisms is prokaryotic?
  2. 2.What best describes a commensal organism?
  3. 3.An organism that is normally harmless but causes infection when the immune system is weakened is called a(n):
  4. 4.Which statement about the normal flora (microbiome) is correct?
  5. 5.Which microorganisms are eukaryotic?

Citations & References

Links open publicly available educational and peer-reviewed sources.

  1. OpenStax. Microbiology.
  2. Centers for Disease Control and Prevention (CDC).
  3. MedlinePlus, U.S. National Library of Medicine.