MIDDLE SCHOOL LIFE SCIENCE (NEXT GENERATION SCIENCE STANDARDS) • FROM MOLECULES TO ORGANISMS: STRUCTURES AND PROCESSES

Distinguish between living and nonliving things based on cellular evidence

Discover how the presence of cells is the key evidence that separates living organisms from nonliving objects.

Historical Context & Motivation

For thousands of years, people wondered what makes something alive. Ancient thinkers looked at movement and growth as clues. A running deer seemed alive, but a rolling rock did not. These observations were helpful, but they could also be tricky.

Think about fire. It "grows," it "eats" fuel, and it seems to move on its own. Is fire alive? Early thinkers struggled with questions like this. The invention of a special tool changed everything: the microscope (a device that magnifies tiny objects). With microscopes, scientists finally found the hidden building blocks of life — cells.

Key Moments in Understanding Life

1665
Robert Hooke Observes "Cells"
English scientist Robert Hooke looked at thin slices of cork under a microscope. He saw tiny, box-like chambers and called them cells because they reminded him of small rooms in a monastery.
1674
Antonie van Leeuwenhoek Sees Living Cells
Dutch lens maker van Leeuwenhoek used powerful handmade lenses to observe living microorganisms in pond water. He called them "animalcules." This was the first time anyone saw single-celled organisms.
1838–1839
Cell Theory Is Born
German scientists Matthias Schleiden (plants) and Theodor Schwann (animals) concluded that all living things are made of cells. This idea became a core part of the cell theory.
1855
Virchow Completes Cell Theory
Rudolf Virchow added a key idea: all cells come from other existing cells. Cells do not just appear out of nowhere. This completed the three main parts of cell theory.

These discoveries gave us a powerful question: Does this object contain cells? If the answer is yes, we have strong evidence that it is alive. This is the question our lesson will help you investigate.

Core Principles & Definitions

Before we can sort things into "living" and "nonliving," we need a solid set of rules. Scientists rely on cell theory (the scientific explanation that all life is built from cells). Cell theory has three main ideas. Let's explore them along with related concepts.

1

All Living Things Are Made of Cells

Every organism, from a tiny bacterium to a giant whale, is made of one or more cells (the smallest unit of life). Nonliving things like rocks and water do not have cells.
2

The Cell Is the Basic Unit of Life

A cell is the smallest structure that can carry out all life functions. It can take in energy, get rid of waste, and respond to its surroundings. Nothing smaller than a cell is considered truly alive.
3

All Cells Come from Existing Cells

New cells are produced when existing cells divide. Life does not spring from nonliving matter on its own. This process is called cell division.
4

Characteristics of Living Things

Living things grow, reproduce, use energy, respond to stimuli, and maintain internal balance called homeostasis (keeping conditions inside the body stable). All of these processes happen at the cell level.
KEY TAKEAWAY
Think of cells like LEGO bricks. Every LEGO creation — a car, a castle, a spaceship — is built from individual bricks. In the same way, every living thing is built from cells. If you break apart a LEGO car, you find bricks. If you zoom in on a living thing, you find cells. A rock, no matter how closely you look, never reveals cells. That's how you know it isn't alive.
🔬 NGSS Connection
This lesson connects to MS-LS1-1: Conduct an investigation to provide evidence that living things are made of cells. The Crosscutting Concept of Structure and Function helps you see how a cell's structure allows it to carry out life functions.

Visual Explanation — Inside a Cell

What exactly do scientists see when they look at living things under a microscope? They see cells! Let's look at a typical animal cell and identify its key parts. Each part has a job that keeps the cell — and the organism — alive.

This diagram shows a simplified animal cell. The cell membrane is the outer boundary. The nucleus holds DNA (the instructions for life). Mitochondria release energy from food. No nonliving object has these organized structures.

When scientists look at a nonliving object, like a grain of sand, under a microscope, they see crystals or minerals. They never see cell membranes, nuclei, or mitochondria. That is the key evidence. If you spot cells, you have found something that is (or once was) alive.

How Cells Carry Out Life Functions

Having cells is the main evidence that something is alive. But why are cells so important? It's because cells perform the basic processes of life. Let's look at how these processes connect to the Crosscutting Concept of Structure and Function.

Life Functions That Only Cells Perform

Life functions and the cell structures that carry them out
Life FunctionWhat It MeansCell Structure Involved
Energy useTaking in food or sunlight and converting it to energy the organism can useMitochondria (animals); chloroplasts (plants)
GrowthIncreasing in size by making new cells through cell divisionNucleus (contains DNA instructions for division)
Response to stimuliReacting to changes in the environment like light, heat, or touchCell membrane (detects signals)
Waste removalGetting rid of harmful byproducts from chemical reactionsLysosomes; cell membrane
ReproductionMaking copies of itself to produce new organisms or replace worn-out cellsNucleus (DNA replication); whole cell (division)

Notice the pattern: every life function depends on a specific cell structure. This is the Structure and Function crosscutting concept in action. The structure of a mitochondrion allows it to perform the function of releasing energy. A rock has no such structures, so it cannot carry out any life functions.

🦠 What About Viruses?
Viruses are tricky! They contain DNA or RNA but are not made of cells. They cannot reproduce on their own — they need a host cell. Most scientists do not classify viruses as living things because they fail the cell test.

Comparing Living and Nonliving Evidence Under the Microscope

Scientists use the Science and Engineering Practice of planning and carrying out investigations to gather cellular evidence. Imagine you collected four mystery samples and looked at each under a microscope. The diagram below shows what you might see.

Four mystery samples viewed under a microscope. Samples A (onion skin) and C (cheek cells) show clear cellular structures with membranes and nuclei. Samples B (sand) and D (salt) show only crystals or minerals — no cells. This pattern is consistent evidence that cells indicate life.

This investigation connects to the Crosscutting Concept of Patterns. We see a clear pattern: every living sample contains cells, and no nonliving sample does. Scientists rely on these patterns to build strong conclusions.

Worked Example — Analyzing a Mystery Sample

Let's walk through a real scenario, step by step. Imagine you are a scientist who finds a strange, green, slimy material at the edge of a pond. Is it alive or not? You will use the Science and Engineering Practice of constructing explanations from evidence.

Mystery at the Pond — Is This Green Slime Alive?
1
Step 1 — Observe the SampleYou notice that the green slime seems to grow larger over several days. It has a slimy texture. However, some nonliving things (like crystals) can also "grow" in size. Observation alone is not enough.
2
Step 2 — Collect a Microscope SampleYou place a thin layer of the slime on a glass slide. You add a drop of water and cover it with a cover slip. Then you view it under a microscope at 400× magnification.
3
Step 3 — Look for Cellular EvidenceUnder the microscope, you see small, round green structures. Each one has a visible outer boundary (a cell membrane or cell wall). Inside, you notice darker spots that look like nuclei. The green color suggests chloroplasts (structures used for photosynthesis).
Cells detected — cell walls, nuclei, and chloroplasts observed.
4
Step 4 — Compare to Cell TheoryCell theory states that all living things are made of cells. Your sample is made of cells. It has structures (like chloroplasts) that carry out life functions (photosynthesis). This matches the pattern we expect from a living organism.
5
Step 5 — Construct Your ExplanationBased on the cellular evidence, the green slime is alive. It is likely a type of algae (a simple organism that lives in water and uses photosynthesis). Your evidence is the presence of cells with organized structures.
Conclusion: The green slime is a living organism (algae). Evidence: cells with cell walls, nuclei, and chloroplasts.
🔍 SCIENCE PRACTICE SPOTLIGHT
Notice how we didn't just say "it looks alive." We gathered evidence (cells under a microscope) and connected that evidence to a scientific explanation (cell theory). This is what scientists mean by constructing explanations from evidence — like a detective building a case with clues instead of guesses.

Strengths and Limitations of Cellular Evidence

Using cellular evidence to sort living from nonliving things is very powerful. But like any method, it has strengths and limitations. Good scientists understand both.

Evaluating the cellular evidence approach
StrengthsLimitations
Works for ALL living things — from bacteria to blue whales.Requires a microscope, which may not always be available.
Based on direct observation, not guessing.Dead organisms still have cells, so you must determine if cells are active.
Supported by hundreds of years of scientific evidence.Viruses have genetic material but no cells — they fall in a gray area.
Connects to a well-established scientific theory (cell theory).Some nonliving things (like wood in a table) came from living things and still show cell structures.
TRICKY CASES
A wooden table is nonliving, but it once came from a living tree. If you look at the wood under a microscope, you will still see cell structures! The key question becomes: are these cells currently carrying out life functions? In a dead piece of wood, the cells are no longer active. It's like an unplugged phone — it has all the parts but isn't doing anything.

Connection to Advanced Biology

In this lesson, you've learned to use cells as evidence for life. In high school biology and beyond, you'll go deeper into how cells work. Here is a preview of where this knowledge leads.

From middle school foundations to high school depth
What You Learn NowWhat Comes Next
All living things are made of cells.There are two main cell types: prokaryotic (no nucleus) and eukaryotic (with a nucleus).
Cells carry out life functions like using energy.You will study cellular respiration and photosynthesis — the chemical reactions that power cells.
Cells have structures like nuclei and mitochondria.You will learn how DNA inside the nucleus stores and transmits genetic information.
New cells come from existing cells.You will study mitosis (cell division for growth) and meiosis (cell division for reproduction).

Everything builds on the foundation you are setting right now. Understanding that cells are the basic unit of life is like learning the alphabet before writing essays. Every advanced topic in biology connects back to cells.

🌍 Anchoring Phenomenon Connection
Our anchoring phenomenon is: "How can you prove that a mysterious sample found in nature is alive?" You now know the answer: examine it under a microscope and look for cellular evidence. If it has cells that carry out life functions, you have scientific proof it is alive.

Practice Problems

Test your understanding with these five questions. They get harder as you go. Remember to use cellular evidence and cell theory to support your thinking!

PROBLEM 1CONCEPTUAL
Which of the following is the best evidence that something is a living organism? A) It moves on its own. B) It is made of one or more cells. C) It is found in nature. D) It contains water.
PROBLEM 2BASIC
A student looks at a sample under a microscope and sees repeating geometric shapes with flat edges and no membrane-bound structures. What should the student conclude? A) The sample is a living organism because it has an organized pattern. B) The sample is nonliving because it lacks cells. C) The sample is alive because it has a repeating structure like cells. D) More information is needed because all matter has structure.
PROBLEM 3INTERMEDIATE
A piece of driftwood washes up on a beach. Under a microscope, a student observes structures that look like cells, but the cells appear dry and empty. Which conclusion is best supported by this evidence? A) The driftwood is alive because cells are present. B) The driftwood was once part of a living organism but is no longer alive. C) The driftwood is nonliving because it contains no cells. D) The driftwood is alive because wood always grows.
PROBLEM 4APPLIED
Scientists discover a new substance deep in the ocean. It appears to grow in size over time. When they examine it under a high-powered microscope, they see no cell membranes, no nuclei, and no organelles. Instead, they see layers of mineral deposits. A news reporter says, "Scientists have found a new life form!" Based on the evidence, which response best evaluates the reporter's claim? A) The reporter is correct because the substance grows. B) The reporter is incorrect; mineral deposits grow but are not alive because they lack cells. C) The reporter is correct because anything found in the ocean is alive. D) The reporter is incorrect because living things can only be found on land.
PROBLEM 5CRITICAL THINKING
Your friend argues: "Viruses must be alive because they have DNA, and DNA is found in living cells." Using what you know about cell theory, construct a counter-argument. Which statement best challenges your friend's claim? A) Viruses are alive because anything with DNA must be living. B) Viruses are not alive because they do not contain cells, cannot carry out life functions on their own, and must invade a host cell to reproduce. C) Viruses are alive because they cause diseases in living things. D) Viruses are nonliving because they are too small to see.

Lesson Summary

The key to distinguishing living from nonliving things is cellular evidence. According to cell theory, all living things are made of cells, the cell is the basic unit of life, and all cells come from existing cells. When you examine a sample under a microscope and find structures like cell membranes, nuclei, and organelles, you have strong evidence that the sample is (or once was) living.

Nonliving things like rocks, crystals, and water lack cellular structure entirely. Tricky cases include dead organisms (which still have cells but are no longer active) and viruses (which have genetic material but are not made of cells). The crosscutting concepts of Structure and Function and Patterns help us connect cell structures to life functions and recognize that the presence of cells is a consistent pattern in all living things.

Varsity Tutors • Middle School Life Science (Next Generation Science Standards) • Distinguish between living and nonliving things based on cellular evidence