Levels of Organization
5. Organisms
Learning outcomes
- I can explain how organ systems work together to form an organism.
- I can describe the levels of biological organization from cell to organism.
- I can explain how life processes depend on cooperation among systems.
- I can identify examples of organization in plants and animals.
- I can evaluate how structure and function are connected at each level of organization.
Organisms
An organism is an individual living thing.
An organism may be extremely simple, such as a single-celled bacterium, or highly complex, such as a tree, bird, or human.
In complex multicellular organisms, survival depends on many specialized structures working together. Cells form tissues, tissues form organs, and organs form organ systems. These organ systems cooperate to form the complete organism.
The main levels of organization are:
cell → tissue → organ → organ system → organism
Levels of Biological Organization
Multicellular organisms have a hierarchical organization. This means simpler structures combine to produce increasingly complex levels.
Each level depends on the level below it.
Cell
A cell is the basic unit of life.
Examples include:
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muscle cell
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nerve cell
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red blood cell
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root hair cell
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palisade cell
Cells carry out essential life processes.
Tissue
A tissue is a group of specialized cells working together.
Examples include:
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muscle tissue
-
nervous tissue
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epithelial tissue
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xylem tissue
-
palisade mesophyll tissue
Organ
An organ contains different tissues working together.
Examples include:
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heart
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lungs
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stomach
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kidney
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leaf
-
root
Organ System
An organ system contains organs that cooperate to perform major functions.
Examples include:
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circulatory system
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respiratory system
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digestive system
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nervous system
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plant root system
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plant shoot system
Organism
All the organ systems work together as one complete living organism.
Examples include:
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human
-
dog
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fish
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oak tree
-
sunflower
From a Cell to an Organism
Consider movement in a human.
Muscle cells are specialized to contract.
Groups of muscle cells form muscle tissue.
Different tissues combine to form a muscle organ.
Muscles work with bones, joints, nerves, and other structures in organ systems.
Several organ systems cooperate to allow the entire organism to move.
So:
specialized cell → tissue → organ → organ system → organism
Each level contributes to the function of the next.
An Animal Example
Consider the circulatory system.
At the cellular level:
Cardiac muscle cells can contract.
At the tissue level:
Many cardiac muscle cells form cardiac muscle tissue.
At the organ level:
Cardiac muscle and other tissues form the heart.
At the organ-system level:
The heart works with blood vessels and blood in the circulatory system.
At the organism level:
The circulatory system works with other systems to keep the animal alive.
This demonstrates how structure and function are connected across every level.
A Plant Example
Plants show the same general principle of biological organization.
A palisade cell contains many chloroplasts.
Many palisade cells form palisade mesophyll tissue.
Palisade tissue combines with other tissues to form a leaf.
Leaves work with stems and roots as part of the plant's larger organization.
Together, these structures form the complete plant organism.
Life Processes Require Cooperation
Organisms must carry out essential life processes.
These include:
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obtaining nutrients
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releasing energy
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exchanging gases
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transporting substances
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removing wastes
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responding to stimuli
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growing
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reproducing
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maintaining stable internal conditions
In multicellular organisms, these processes usually require several organ systems working together.
Obtaining Energy for Life
Cells require usable energy.
In humans and many other animals, several systems cooperate to make this possible.
The digestive system:
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breaks down food
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absorbs glucose and other nutrients
The respiratory system:
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brings oxygen into the body
The circulatory system:
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carries glucose and oxygen to cells
Cells then use glucose and oxygen in aerobic respiration.
A simplified equation is:
glucose + oxygen → carbon dioxide + water + energy
No single organ system can supply everything the cells need.
Respiratory and Circulatory Cooperation
The lungs bring oxygen close to the blood.
Oxygen diffuses into blood at the alveoli.
The heart pumps oxygenated blood around the body.
Blood delivers oxygen to cells.
Cells produce carbon dioxide.
Blood carries carbon dioxide back to the lungs.
The lungs remove it during exhalation.
Therefore:
respiratory system + circulatory system → efficient gas transport
Maintaining Homeostasis
Homeostasis is the maintenance of relatively stable internal conditions.
Living cells function best within particular ranges of:
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temperature
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water concentration
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glucose concentration
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ion concentration
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pH
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oxygen concentration
Several organ systems cooperate to maintain these conditions.
Structure and Function
A major principle in biology is:
structure supports function
This applies at every level of organization.
Cell Level
A red blood cell has a biconcave shape that increases surface area for gas exchange.
Tissue Level
Muscle tissue contains elongated cells capable of contraction.
Organ Level
The heart has thick muscle and valves for pumping blood.
The lungs have millions of alveoli for gas exchange.
Organ-System Level
The circulatory system contains a pump, blood, and a branching network of vessels for transport.
Organism Level
The complete organism survives because all of these levels work together.
Plants Also Depend on System Cooperation
Plants may not have organs such as lungs or hearts, but their structures are also highly coordinated.
Roots absorb water and mineral ions.
Xylem transports water upward.
Leaves absorb light and carbon dioxide.
Palisade cells carry out photosynthesis.
Phloem transports sugars.
Stomata regulate gas exchange and water loss.
All of these structures contribute to the survival of the plant.
Comparing Plant and Animal Organization
|
Level |
Animal Example |
Plant Example |
|---|---|---|
|
Cell |
Muscle cell |
Palisade cell |
|
Tissue |
Muscle tissue |
Palisade mesophyll |
|
Organ |
Heart |
Leaf |
|
Organ system |
Circulatory system |
Shoot system |
|
Organism |
Human |
Sunflower |
Plants and animals use different structures, but both demonstrate hierarchical biological organization.
Interdependence
Interdependence means that different parts depend on one another.
For example:
The muscular system depends on the respiratory system for oxygen.
The respiratory system depends on the muscular system for breathing movements.
Both depend on the circulatory system for transport.
The circulatory system depends on the nervous and endocrine systems for regulation.
The body functions as an integrated whole.
Worked Example: Levels of Organization
Place these in order from simplest to most complex:
-
heart
-
cardiac muscle cell
-
human
-
circulatory system
-
cardiac muscle tissue
Correct order:
cardiac muscle cell → cardiac muscle tissue → heart → circulatory system → human
Worked Example: Plant Organization
A palisade cell is part of palisade mesophyll tissue.
The tissue is found inside a leaf.
The leaf forms part of the shoot system.
The shoot system belongs to the complete plant.
Therefore:
palisade cell → palisade tissue → leaf → shoot system → plant
Worked Example: System Failure
Suppose the heart becomes unable to pump enough blood.
Predict one effect on muscle cells.
Less blood reaches the muscle cells.
Therefore, less oxygen and glucose may be delivered.
Aerobic respiration may decrease.
The cells may have less energy available for contraction.
This shows how failure at the organ level can affect cells and the entire organism.
Common Misconceptions
An organism is simply a collection of organs.
A complex organism is an integrated system containing cells, tissues, organs, and organ systems that constantly interact.
Each organ system works independently.
Incorrect. Organ systems depend heavily on one another.
Only animals have organ systems.
Plants also contain organized groups of organs, such as root and shoot systems.
The organism level is unrelated to the cell level.
Every function of the organism ultimately depends on the activity of cells.
Structure and function are only related at the organ level.
The relationship between structure and function occurs at cells, tissues, organs, organ systems, and the whole organism.
Did You Know?
A change at one level of organization can spread through all the others.
For example, damage to heart muscle cells can affect cardiac muscle tissue. This can reduce the heart's ability to pump, affecting the circulatory system and ultimately reducing oxygen delivery throughout the organism.
The reverse is also true: a whole-body change such as exercise can cause individual cells to change their activity.
Biological organization therefore works in both directions—from cells to the whole organism and from the whole organism back to its cells.
Key Terms
Organism – An individual living thing.
Cell – The basic structural and functional unit of life.
Tissue – A group of specialized cells working together.
Organ – A structure made of different tissues working together.
Organ system – A group of organs working together to perform major functions.
Specialization – Development of structures suited to particular functions.
Division of labour – Different parts carrying out different specialized tasks.
Interdependence – A situation in which different parts rely on one another.
Homeostasis – Maintenance of relatively stable internal conditions.
Structure – The physical arrangement or form of a biological feature.
Function – The role or job performed by a biological structure.
Key Takeaways
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An organism is an individual living thing.
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Multicellular organisms are organized as cells → tissues → organs → organ systems → organism.
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Specialized cells combine to form tissues.
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Different tissues form organs.
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Organs cooperate in organ systems.
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Organ systems work together to maintain the whole organism.
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Major life processes depend on cooperation between several systems.
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Plants and animals both show hierarchical biological organization.
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Organ systems are highly interdependent.
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Homeostasis depends on several organ systems working together.
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Structure is closely related to function at every level of organization.
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Problems at one level of organization can affect many other levels.
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A multicellular organism survives because its cells, tissues, organs, and organ systems function as one integrated whole.