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Lesson 2 of 5 / Photosynthesis and energy capture

Light-driven electron transfer

Where do the replacement electrons and released oxygen come from?

In this lesson: Explain non-cyclic light-dependent reactions and energy conversion.

About 8 min

The key ideaLight excites electrons; water supplies replacements, electron transfer supports ATP formation, and NADP accepts reducing power.

Explore the idea

Trace water electrons to reduced NADP

Water -> O2 + H+ + electronsElectron sourcePhotosystem IILight excitationElectron carriersProton accumulation in lumenPhotosystem ILight excitationNADP -> reduced NADPReducing power in stroma

Water oxidation supplies electrons to replace those lost by photosystem II. Protons enter the thylakoid lumen and oxygen is released; CO2 is not the electron source in this route.

This is the order of electron transfer, not a spatial cross-section or a graph of electron energy. The first box lists products qualitatively and is not a balanced chemical equation. ATP synthesis uses the proton gradient explained in the next lesson.

Explanation

Pigment molecules absorb photons and transfer excitation energy to a photosystem reaction centre. In non-cyclic electron flow, light excitation at photosystem II raises an electron to a higher-energy state and it is transferred to an acceptor. Water is split, supplying replacement electrons, protons and oxygen as a by-product.

Electrons pass through carriers in the thylakoid membrane. Energy released during transfer is coupled to movement of protons into the thylakoid lumen, contributing to a proton electrochemical gradient. The energy is not destroyed; it is transferred into a form that can support ATP synthesis.

At photosystem I, further light excitation raises electron energy again. Electrons ultimately reduce NADP, together with protons, to reduced NADP (NADPH) on the stromal side. Reduced NADP supplies reducing power for carbon reduction in the Calvin cycle.

The oxygen released comes from water, not directly from carbon dioxide. ATP and reduced NADP link light capture to carbohydrate synthesis, but the light-dependent reactions do not themselves fix carbon into glucose. Names of individual electron-carrier complexes and detailed ATP synthase mechanics are outside the specified requirement.

Step by step
  1. 1

    Track the electron source

    Begin with water rather than carbon dioxide.

  2. 2

    Track energy twice

    Excitation occurs at both photosystems in non-cyclic flow.

  3. 3

    Track the products

    Separate oxygen, ATP and reduced NADP by role.

Worked example

Work through the evidence

If water is labelled with a heavy oxygen isotope, where would the label be expected in the released gas?

One way to explain it

In oxygen gas produced by photolysis of water. This supports water as the source of photosynthetic oxygen.

Why this answer works
  • Trace atoms as well as energy.
  • Carbon dioxide supplies carbon for fixation but is not the direct source of the evolved oxygen in this mechanism.
Is this true? "The oxygen released in photosynthesis is split directly from CO2 during the Calvin cycle."

It is produced by water oxidation in the light-dependent reactions.

Try a question

What is the main role of reduced NADP in the Calvin cycle?
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