aimnova.
DashboardMy LearningPaper MasteryStudy Plan

Aimnova site navigation

Stay in the loop

Get the latest study resources and updates

New features, study tips and exam insights — straight to your inbox.

IB Diploma

  • IB Past Papers
  • IB Study Notes
  • IB Question Bank
  • IB Mock Exams
  • IB Revision

IB Subjects

  • IB Math AA
  • IB Math AI
  • IB Economics
  • IB Business Management
  • IB Physics
  • IB Biology
  • View all IB subjects→

IB Past Papers

  • IB Math AA HL Past Papers
  • IB Math AA SL Past Papers
  • IB Math AI HL Past Papers
  • IB Math AI SL Past Papers
  • IB Economics HL Past Papers
  • IB Economics SL Past Papers
  • IB ESS Past Papers
  • View all past papers→

Study Resources

  • Study Notes
  • Question Bank
  • Mock Exams
  • Flashcards
  • Revision Guide
  • Exam Skills
  • Command Terms
  • Grade Calculator
  • Exam Timetable 2026

Aimnova

  • Features
  • Pricing
  • For Teachers
  • For Schools
  • For Parents
  • About Us
  • Blog
  • Contact
aimnova.

AI-powered study platform for smarter revision, past-paper analysis and examiner-style feedback.

TermsPrivacyCookies·© 2026 Aimnova. All rights reserved.70812b2

Aimnova is not affiliated with or endorsed by the International Baccalaureate Organization (IB).

NotesBiologyTopic 2.4Endosymbiotic origin of organelles
Back to Biology Topics
2.4.45 min read

Endosymbiotic origin of organelles

IB Biology • Unit 2

Your first topic is free to keep

Know exactly what to write for full marks

Practice with exam questions and get AI feedback that shows you the perfect answer — what examiners want to see.

Start Free

Contents

  • What endosymbiosis means
  • How an engulfed bacterium became an organelle
  • Exam-style question
The big idea: Mitochondria and chloroplasts were not always part of eukaryotic cells.

The endosymbiotic theory says they began as free-living prokaryotes (bacteria) that were engulfed by a larger host cell and then survived inside it.

Over many generations the trapped bacterium became a permanent organelle: an aerobic bacterium became the mitochondrion, and a photosynthetic bacterium became the chloroplast.

An ancestral host cell engulfs a free-living aerobic bacterium by endocytosis; the bacterium survives inside and, over many generations, becomes a mitochondrion.

Interactive diagram

Explore the labelled diagram, charts and maps for this topic in full study mode.

Claim your free topic
Endosymbiotic theory
The explanation that mitochondria and chloroplasts evolved from free-living prokaryotes that were engulfed by a host cell and survived inside it.
Endosymbiosis
One organism living inside the cells of another, where both benefit. 'Endo' = inside, 'symbiosis' = living together.
Host cell
The larger ancestral cell that engulfed the bacterium; it became the eukaryotic cell we know today.
Prokaryote
A small cell with no nucleus and no membrane-bound organelles (a bacterium). The ancestor of mitochondria and chloroplasts was a prokaryote.
Organelle
A membrane-bound structure inside a eukaryotic cell that does a particular job — for example a mitochondrion or a chloroplast.
Read the word: Endo = inside, sym = together, biosis = living.

So endosymbiosis literally means 'living together, inside' — one cell living permanently inside another, with both partners benefiting.

Free preview

This is the free notes preview

You're reading the free notes. Aimnova Pro unlocks the full study experience — and you can try it with your first topic free to keep:

  • FlashcardsLock in vocabulary and key terms with spaced repetition.
  • Practice questionsAnswer exam-style questions and get instant AI marking.
  • Mock exams & past-paper vaultSit full mocks and see exactly how examiners award marks.
  • Personalised study planA daily plan built around your exam date and weak areas.
Start Studying Free Full access to Aimnova Pro · cancel anytime

Endosymbiosis happened in a clear sequence. A large host cell took in a smaller bacterium, the bacterium turned out to be useful rather than digested, and so it was kept.

Follow the three steps below — they are exactly what an 'explain the endosymbiotic theory' question is asking you to describe.

The endosymbiotic sequence

  • Engulf. A large host cell took in a smaller free-living prokaryote by endocytosis (the membrane folded around it), so the bacterium ended up inside a vesicle.
  • Survive, don't digest. The bacterium was not broken down. Instead it survived and reproduced inside the host.
  • Mutual benefit. The relationship was beneficial to both: the bacterium gained shelter and nutrients, while the host gained energy (from an aerobic bacterium) or food (from a photosynthetic one).
  • Become an organelle. Over many generations the bacterium was retained permanently and became an organelle — a mitochondrion or a chloroplast.
Two organelles, the same story: Both of these organelles arose by endosymbiosis — only the bacterium that was engulfed differs:

an aerobic bacterium became the mitochondrion (it respires to release energy), and a photosynthetic bacterium became the chloroplast (it makes food using light).

This is why mitochondria are found in (almost) all eukaryotes, but chloroplasts only in plants and algae — those cells engulfed the photosynthetic partner.
Organelle todayFree-living ancestorJob it does inside the host
MitochondrionAn aerobic (oxygen-using) bacteriumAerobic respiration — releases usable energy (ATP) for the host
ChloroplastA photosynthetic bacterium (a cyanobacterium)Photosynthesis — makes food (sugar) using light, in plants and algae
Why the engulfing was kept up: Endocytosis happens all the time, but a one-off meal does not make an organelle.

What made this special is that the relationship was mutually beneficial, so natural selection favoured keeping the bacterium.

That is the part examiners want: the bacterium survived, reproduced, and gave the host an advantage, so it was retained generation after generation.
A memory hook: Engulf -> survive -> benefit both -> keep forever.

If you can say those four words in order, you can answer almost any 'explain the endosymbiotic theory' question.

See how examiners mark answers

Access past paper questions with model answers. Learn exactly what earns marks and what doesn't.

Try Exam Vault FreeYour first topic is free to keep • No credit card required
How this is tested: On Paper 1 a 1-mark item often asks you to explain how the endosymbiotic theory accounts for the origin of mitochondria — give the core idea: an aerobic bacterium was engulfed by a host cell and survived inside it.

On Paper 2 a 3-mark Explain question widens it to eukaryotic cells and their organelles — here you must mention both mitochondria and chloroplasts, the engulfing, and the survival inside the host.

A favourite Paper-1 data / evidence twist gives you a leaf cell with two ribosome sizes and asks you to explain it using the theory — the 70S ribosomes belong to the chloroplast's bacterial ancestor.

IB-style question — explain the origin of eukaryotic organelles

Explain the endosymbiotic theory for how eukaryotic cells and their organelles originated. [3]

How to score all three marks

  1. Start with the engulfing. A larger host cell engulfed a smaller free-living prokaryote (bacterium) by endocytosis, so the bacterium ended up inside the host.
  2. Explain survival and benefit. The bacterium was not digested; it survived and reproduced inside the host, and the relationship was beneficial to both partners, so it was kept.
  3. Name the organelles formed. Over many generations the engulfed bacterium became an organelle: an aerobic bacterium became the mitochondrion, and a photosynthetic bacterium became the chloroplast. (Award 1 mark for engulfing by the host, 1 mark for survival/mutual benefit inside the host, 1 mark for naming mitochondrion AND chloroplast as the result.)

Final answer

A host cell engulfed free-living prokaryotes that survived inside it; the relationship benefited both, so the bacteria were kept and became organelles — an aerobic bacterium became the mitochondrion and a photosynthetic bacterium became the chloroplast.

Why this scores full marks: A 3-mark Explain needs three distinct, linked points: the engulfing, the survival inside the host, and both organelles named.

Writing only 'a bacterium became a mitochondrion' caps you at 1 mark — the chloroplast and the survival step are the other two marks.
Organelle todayFree-living ancestorJob it does inside the host
MitochondrionAn aerobic (oxygen-using) bacteriumAerobic respiration — releases usable energy (ATP) for the host
ChloroplastA photosynthetic bacterium (a cyanobacterium)Photosynthesis — makes food (sugar) using light, in plants and algae

Try an IB Exam Question — Free AI Feedback

Test yourself on Endosymbiotic origin of organelles. Write your answer and get instant AI feedback — just like a real IB examiner.

the process by which the ancestral host cell took the free-living bacterium inside itself. [1 mark]

Related Biology Topics

Continue learning with these related topics from the same unit:

2.1.1Carbon and building macromolecules
2.1.2Monosaccharides and disaccharides
2.1.3Polysaccharides: structure and function
2.1.4Triglycerides and fatty acids
View all Biology topics

Improve your exam technique

Command terms, paper structure, and mark-scheme tips for Biology

Previous
2.4.3Comparing cell types by their organelles
Next
Differentiation: from unspecialized to specialized cells2.5.1

16 practice questions on Endosymbiotic origin of organelles

Students who practiced this topic on Aimnova scored 82% on average. Try free practice questions and get instant AI feedback.

Try 3 Free QuestionsView All Biology Topics