5TH GRADE SCIENCE • MOLECULES TO ORGANISMS

Where Does Plant Matter Come From?

Explore the surprising sources of the material that makes up a towering tree, and discover how air and water become leaves, wood, and roots.

The Phenomenon

🔍 Anchoring Phenomenon

This is exactly what a scientist named Jan Baptist van Helmont observed nearly 400 years ago. He grew a willow tree in a carefully weighed pot of soil for five years. The tree gained about 74 kilograms, but the soil lost only about 57 grams. Where did all that new tree material come from, if it didn't come from the soil?

Van Helmont's willow tree experiment: the tree gained ~74 kg while the soil lost only ~0.1 kg.
💭 Thinking Questions
  • If the tree gained over 74 kg but the soil barely changed, where did the new material come from?
  • What was the tree taking in during those five years besides soil?
  • How could something invisible — like air — become something solid like wood?

What Scientists Know

For a long time, people assumed that plants "eat" soil to grow. But hundreds of years of scientific investigation have revealed a very different — and more amazing — truth. Let's look at what scientists have discovered about where plant matter actually comes from.

1

Plants Take In Carbon Dioxide from Air

Through tiny openings on their leaves called stomata, plants absorb carbon dioxide (CO₂) — a gas that makes up a small part of the air around us. This invisible gas is the main source of the carbon atoms that become leaves, stems, roots, and wood. The air you breathe out is rich in CO₂, and plants use it as a building material!
2

Plants Absorb Water Through Their Roots

Roots pull water (H₂O) from the soil and transport it upward through the stem. This water provides the hydrogen and some of the oxygen atoms that plants need to build new molecules. Water is the second major ingredient in making plant matter.
3

Sunlight Powers the Process

Plants use energy from sunlight to power a process called photosynthesis. During photosynthesis, plants rearrange the atoms in carbon dioxide and water to build sugar molecules — a type of food the plant uses for energy and growth. Sunlight is not a material itself — it is the energy source that drives the chemical change.
4

Plant Matter Is Mostly Built from Air and Water

The sugars built during photosynthesis are rearranged into all the different molecules that make up a plant — cellulose in cell walls, starch for stored energy, proteins, and oils. Since the carbon in these molecules came from CO₂ in the air and the hydrogen came from water, most of a plant's mass comes from air and water, not from the soil.
KEY TAKEAWAY
Key Takeaway

Let's Investigate

Scientists use evidence from investigations to support the claim that plant matter comes mostly from air and water. Here's an investigation that helps us see this in action.

Tracking Where the Mass Goes

🔬 Investigation Spotlight

The question: If a plant grows in a sealed container with only air, water, and light, can it still gain mass?

Setup: A student places a small plant in a clear, sealed container. The plant has access to water (in a small reservoir), air (sealed inside the container), and light (the container is transparent). No new soil is added, and no new air enters the container. The student measures the plant's mass at the start and every week for 6 weeks.

What they would observe: The plant gains mass even though no soil is added. The water level in the reservoir decreases. When scientists measure the CO₂ in the air inside the container, they find it decreases over time. This is evidence that the plant is converting air (CO₂) and water into new plant material.

Plant growth data in a sealed container over 6 weeks
WeekPlant Mass (grams)Water Used (mL)CO₂ Level in Container
0 (Start)12.00Normal (0.04%)
112.435Slightly lower
213.172Lower
314.0115Much lower
415.2160Much lower
516.1210Very low
616.8255Very low

Notice: The plant gained 4.8 grams while using 255 mL of water and decreasing the CO₂ level in the sealed container. No soil was consumed.

How Photosynthesis Builds Plant Matter

The photosynthesis process: CO₂ from air and H₂O from soil combine in the leaf using sunlight energy to produce sugar and oxygen.

What We Discovered

The investigation data gives us strong evidence for a claim that might seem hard to believe at first: most of a plant's mass comes from carbon dioxide gas in the air and water from the ground. Let's trace exactly where the atoms go.

Carbon dioxide (CO₂) is a gas made of one carbon atom and two oxygen atoms. When a plant pulls CO₂ into its leaves during photosynthesis, it strips out the carbon atom and uses it as a building block. These carbon atoms are linked together with hydrogen atoms (from water) to form sugar molecules. The plant then rearranges those sugars into all the complex molecules it needs — cellulose for strong cell walls, starches for stored energy, and many other substances.

If you could weigh all the carbon in a large tree and trace where it came from, you would find that almost all of it entered the tree as CO₂ through the stomata on the leaves. And if you could trace all the hydrogen atoms, you would find they came from the water the roots absorbed. Together, carbon from the air and hydrogen and oxygen from water account for about 95% or more of a plant's total dry mass.

What about the soil? The soil does provide minerals — substances like nitrogen, phosphorus, potassium, and iron — that plants need in small amounts. These minerals are important, but they make up only a tiny fraction of the plant's total weight. That is why, in van Helmont's experiment, the soil lost almost no mass even though the tree gained dozens of kilograms.

Where Does a Plant's Mass Come From?

Bar chart showing that ~95% of a plant's dry mass comes from air (CO₂) and water (H₂O), with only ~5% from soil minerals.
KEY TAKEAWAY
Key Takeaway

Patterns and Connections

The crosscutting concept in this lesson is Energy and Matter: Flows, Cycles, and Conservation. This idea shows up all across science, not just in plants. The key insight is that matter is made of atoms that cycle between different forms — atoms are not created or destroyed, they just move from one substance to another.

In photosynthesis, carbon atoms don't appear out of nowhere. They move from CO₂ molecules in the air into sugar molecules inside the plant. Hydrogen atoms move from water molecules into those same sugars. The atoms are rearranged, not created. This is a pattern scientists see everywhere in nature.

ExampleWhere Matter StartsWhere Matter Ends UpPattern
Plant growthCO₂ in air, H₂O in soilSugar, cellulose, starch in the plantAtoms move from air/water into solid plant material
Burning woodSolid wood + oxygen in airCO₂ gas, water vapor, ashAtoms move from solid material back into air
Rusting ironSolid iron + oxygen in air + waterIron oxide (rust) — heavier than the original ironAtoms from air combine with solid metal, adding mass
Animal eatingFood (plant or animal matter)Body growth + CO₂ breathed out + wasteAtoms from food are rearranged into body parts or released as gas

Notice the pattern: in every example, matter is not created or destroyed — it just changes form. When a plant grows, it isn't making atoms from nothing. It is pulling atoms from the air and water and rearranging them into new substances. When wood burns, those same carbon atoms go back into the air as CO₂. It's a cycle!

KEY TAKEAWAY
Key Takeaway

Real-World Connections

Understanding that plants build themselves from air and water has big implications for the real world — from farming to fighting climate change.

1

🌳 Forests and Climate Change

Because trees pull carbon dioxide out of the air and lock the carbon into wood, forests act like giant carbon sponges. When people plant trees, those trees remove CO₂ from the atmosphere. When forests are cut down and the wood is burned, all that stored carbon goes back into the air. Scientists and engineers use this knowledge to develop strategies for reducing CO₂ in the atmosphere.
2

🌾 Smart Farming

Farmers know that crops need water and sunlight to grow — and now you know why! Agricultural engineers design irrigation systems (to deliver water efficiently) and greenhouses (to maximize light) because these are the two raw materials plants use most. Fertilizers provide minerals from the soil, but they make up only a small fraction of what the plant needs.
3

🔬 Biofuels and Engineering

Engineers are developing biofuels — fuels made from plant matter. Since plants capture carbon from the air as they grow, burning biofuel releases that same carbon back. This makes biofuels potentially more sustainable than fossil fuels, which release carbon that has been stored underground for millions of years. Understanding the source of plant matter helps engineers design better energy solutions.
4

🏠 Building with Wood

When you live in a wooden house, you're surrounded by material that was once CO₂ in the air and water in the ground! That carbon stays locked in the wood for as long as the building stands. Some architects now prefer wood construction because it stores carbon rather than producing it, the way cement and steel manufacturing do.

Key Vocabulary Review

  • Photosynthesis — The process by which plants use sunlight energy to convert carbon dioxide and water into sugar and oxygen. This is how plants make their own food and build new material.
  • Carbon dioxide (CO₂) — A colorless, odorless gas found in the air. It is made of one carbon atom and two oxygen atoms. Plants absorb CO₂ through their leaves and use the carbon to build plant matter.
  • Stomata — Tiny pore-like openings on the surface of leaves that allow gases (CO₂ and O₂) to move in and out of the plant.
  • Matter — Anything that has mass and takes up space. Plants, air, water, and soil are all made of matter. Matter is made of tiny particles called atoms.
  • Mass — The amount of matter in an object, usually measured in grams or kilograms. When a plant grows, its mass increases because it has gained new matter.
  • Minerals — Substances like nitrogen, phosphorus, and potassium that plants absorb from the soil in small amounts. Minerals are necessary for plant health but make up only a small fraction of a plant's total mass.
  • Sugar (glucose) — The molecule that plants produce during photosynthesis. Plants use sugar as a source of energy and as a building block for making other molecules like cellulose and starch.
  • Cellulose — A strong molecule made of linked sugar units that forms the walls of plant cells. Cellulose gives plants their rigid structure and makes up a large portion of wood.

Practice: Test Your Understanding

1
A student planted a tiny seedling in a pot of soil. Over five years, the tree grew and gained 45 kilograms of mass. The soil in the pot lost only 0.5 kilograms. Where did most of the tree's new mass come from?
2
A scientist placed a healthy plant inside a sealed glass jar with a sensor that measures only the concentration of carbon dioxide (CO₂) in the air. She put the jar in sunlight for several hours. The sensor showed that the concentration of CO₂ inside the jar decreased. Why did the CO₂ concentration drop?
3
A student grew two identical plants under the same sunlight. Plant A was watered regularly. Plant B received no water at all. After three weeks, Plant A grew much larger while Plant B wilted and stopped growing. What does this experiment help show about how plants grow?
4
Many people think that plants eat soil to grow bigger. Which piece of evidence best supports the idea that most of a plant's mass does NOT come from soil?
5
A farmer notices that her corn plants grow very tall each summer. She wonders where the material that makes up the tall stalks and large leaves comes from. Which statement best explains where most of the new plant material comes from?

What's Next?

🔮 What's Next?
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