By the end of this chapter you'll be able to…

  • 1Write the balanced equation for photosynthesis and name the site, raw materials, and products
  • 2Distinguish the light reaction (thylakoid, produces O₂/ATP/NADPH) from the dark reaction/Calvin cycle (stroma, fixes CO₂ to glucose)
  • 3State 4 factors that affect the rate of photosynthesis
  • 4Explain transpiration — definition, functions, and factors that increase rate
  • 5Compare xylem and phloem under: what is transported, direction, cell type, and driving force
  • 6Explain the cohesion-tension theory of water transport in xylem
  • 7Describe the classic experiments demonstrating photosynthesis (starch test, CO₂ necessity, O₂ release)
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Why this chapter matters
Plant Physiology is a high-scoring chapter in AP Class 9 Biology. The photosynthesis equation (6CO₂ + 12H₂O → C₆H₁₂O₆ + 6O₂ + 6H₂O) is tested in almost every exam. The xylem vs phloem comparison table is a reliable 3-4 mark question. Transpiration's role as 'necessary evil' — driving water transport AND cooling — is a favourite essay/short-answer question. AP-specific connections (rice/sugarcane agriculture, Godavari-Krishna irrigation, Rayalaseema drought) make this chapter locally relevant and mark-productive in AP Board exams.

Plant Physiology

"Plants are the planet's FOOD FACTORIES. They convert SUNLIGHT into the ENERGY that sustains nearly ALL life on Earth."

1. Photosynthesis

The Equation

6CO₂ + 12H₂O →(Sunlight, Chlorophyll)→ C₆H₁₂O₆ + 6O₂ + 6H₂O

Where Does It Happen?

CHLOROPLASTS — organelles in the mesophyll cells of leaves. Each chloroplast contains CHLOROPHYLL (green pigment) that traps SUNLIGHT energy. 'A square millimetre of leaf surface contains ~500,000 chloroplasts.'

Raw Materials and Their Sources

  • CO₂: From atmosphere. Enters through STOMATA (tiny pores, mainly on leaf underside). Guard cells control opening/closing.
  • Water: From soil. Absorbed by ROOT HAIRS. Travels UP through XYLEM vessels.
  • Sunlight: Trapped by chlorophyll in thylakoid membranes.

The Two Phases

Light Reaction (thylakoid membranes — REQUIRES light): Water is SPLIT (photolysis) → O₂ released. ATP and NADPH produced (energy carriers). Dark Reaction/Calvin Cycle (stroma — does NOT directly require light): CO₂ is FIXED using ATP and NADPH → Glucose produced.

Factors Affecting Photosynthesis Rate

Light intensity. CO₂ concentration. Temperature. Water availability.


2. Transpiration

Loss of WATER VAPOUR from aerial parts of the plant — mainly through STOMATA. Functions: Creates TRANSPIRATION PULL — draws water UP through xylem from roots (the main driving force for water transport). COOLING effect (evaporative cooling — protects leaves from scorching). Factors increasing transpiration: High temperature. Low humidity. Wind. High light intensity (stomata open).


3. Transport in Plants

FeatureXylemPhloem
TransportsWATER + DISSOLVED MINERALS from rootsFOOD (sucrose) from leaves to all parts
DirectionONE-WAY (roots → shoots)TWO-WAY (source → sink)
CellsDEAD at maturity (tracheids, vessels)LIVING (sieve tubes — no nucleus. Companion cells control them)
Driving ForceTRANSPIRATION PULL (passive — no energy needed)Active transport (needs ATP — energy)

The Cohesion-Tension Theory

Water evaporates from leaves (transpiration) → creates NEGATIVE PRESSURE (tension) in leaf xylem → this tension is transmitted DOWN through the continuous water column → pulls water UP from roots. 'Cohesion (water molecules stick together) + Adhesion (water sticks to xylem walls) + Transpiration pull = THE mechanism of water transport.'


4. Common Mistakes

  1. 'Plants only photosynthesise, they don't respire' — Plants PHOTOSYNTHESISE (day) AND RESPIRE (day AND night).
  2. 'Xylem is living' — Xylem vessels and tracheids are DEAD at maturity. Phloem sieve tubes are LIVING.
  3. 'Transpiration is wasteful' — It's ESSENTIAL — drives water transport AND cools the plant.

5. AP SSC Exam Focus

TopicMarks
Photosynthesis — equation, site, raw materials4-5
Xylem vs Phloem3-4
Transpiration — factors and significance3-4

Photosynthesis in AP Context

'Andhra Pradesh is the RICE BOWL of India. The Krishna-Godavari delta produces MILLIONS of tonnes of rice annually — all powered by PHOTOSYNTHESIS. AP farmers depend on sunlight, water from the Godavari and Krishna rivers, and CO₂ from the atmosphere. Understanding photosynthesis is not just academic — it is understanding the PROCESS that FEEDS our state.'

Factors Limiting Photosynthesis — Agricultural Applications

  • In winter (Rabi) : Lower temperatures can LIMIT photosynthesis rate. Farmers choose wheat over rice (wheat needs less warmth).
  • Water stress: In drought-prone Rayalaseema, water is the LIMITING FACTOR. Even with abundant sunlight, photosynthesis STOPS when stomata close to conserve water.
  • CO₂ enrichment in greenhouses: Adding CO₂ increases photosynthesis rate — a technique used in commercial horticulture.

Transpiration — A Necessary Evil?

Transpiration is sometimes called a 'NECESSARY EVIL' — it loses precious water, BUT it DRIVES water transport and COOLS the plant. Without transpiration: no water transport, no mineral delivery, no photosynthesis. 'The plant has EVOLVED to balance water loss against the benefits of transpiration. Stomata CLOSE when water is scarce — even though this STOPS photosynthesis. Survival trumps growth.'

Photosynthesis — Deeper Dive into Experiments

Experiment — Testing for Starch (Evidence of Photosynthesis) : Take a variegated leaf (green + white patches). Draw its outline. Boil in water (kill cells). Boil in alcohol (remove chlorophyll — leaf turns white). Wash in water. Add iodine solution. Observation: GREEN parts turn BLUE-BLACK (starch present). WHITE parts remain BROWN (no chlorophyll → no photosynthesis → no starch). 'This experiment proves TWO things: (1) chlorophyll is NECESSARY for photosynthesis, (2) starch is a PRODUCT of photosynthesis.'

Experiment — CO₂ Is Necessary: Take two potted plants. Place one in a bell jar with KOH (absorbs CO₂). Place the other in a bell jar without KOH. Keep both in sunlight. After 24 hours, test leaves for starch. KOH jar leaf: NO starch. Control leaf: starch present. Conclusion: CO₂ is NECESSARY for photosynthesis.

Experiment — O₂ Is Released: Place Hydrilla (aquatic plant) in a beaker of water. Cover with a funnel. Invert a test tube over the funnel. Expose to sunlight. Bubbles rise from the plant and collect in the test tube. Test the gas: glowing splint REKINDLES → gas is OXYGEN.

The Calvin Cycle — Simplified

Melvin Calvin traced the path of carbon in photosynthesis using radioactive C-14 (Nobel Prize, 1961). The cycle: CO₂ + RuBP (5-carbon) → 2 PGA (3-carbon) → (ATP + NADPH from light reaction) → PGAL (3-carbon) → Glucose (6-carbon) + RuBP regenerated. 'The Calvin cycle turns 6 times to produce ONE glucose molecule, consuming 18 ATP and 12 NADPH per glucose.'

C₃ vs C₄ Plants — AP-Relevant Context

FeatureC₃ PlantsC₄ Plants
First product3-carbon compound (PGA)4-carbon compound (oxaloacetate)
PhotorespirationSignificantNegligible
Water use efficiencyLowerHigher
ExamplesRice, wheat, soybeanMaize, sugarcane, sorghum
AP relevanceRice is C₃ — dominant crop in APSugarcane is C₄ — grown in coastal AP

Minerals and Plant Nutrition

Macronutrients (needed in larger amounts): Nitrogen (N — proteins, chlorophyll. Deficiency: yellowing of old leaves), Phosphorus (P — ATP, DNA. Deficiency: purple leaves, stunted growth), Potassium (K — stomatal opening, enzyme activation. Deficiency: scorched leaf margins).

Micronutrients (needed in trace amounts): Iron (Fe — chlorophyll synthesis), Zinc (Zn — enzyme cofactor), Boron (B — pollen tube growth), Manganese (Mn — water splitting in photosynthesis).

Transport — Root Pressure and Guttation

Besides transpiration pull, two other forces move water: Root Pressure: Active pumping of ions into xylem → water follows by osmosis → positive pressure pushes water up. Visible as 'guttation' — water droplets on leaf margins in small plants on humid mornings (NOT dew — this is water EXUDED by the plant). Capillarity: Narrow xylem vessels exert capillary force — water rises in thin tubes due to adhesion.

Phloem Transport — The Pressure Flow Hypothesis

At the SOURCE (leaves): Sucrose is actively LOADED into sieve tubes → high solute concentration → water ENTERS from adjacent xylem by osmosis → HIGH PRESSURE. At the SINK (roots, fruits, growing tips): Sucrose is actively UNLOADED → water EXITS → LOW PRESSURE. The pressure difference drives bulk flow from source to sink. 'Phloem transport requires ENERGY (ATP) at BOTH ends — for active loading and unloading. Xylem transport is passive — driven by transpiration.'

Stomatal Mechanism — Potassium Ion Pump

Guard cells OPEN stomata by actively pumping K⁺ ions in → water follows by osmosis → guard cells become TURGID and curve (due to uneven wall thickness) → pore OPENS. Guard cells CLOSE by pumping K⁺ out → water exits → guard cells become FLACCID → pore CLOSES. 'Light triggers the K⁺ pump. In darkness, stomata close. This is why most transpiration occurs during the day.'

Quick Self-Test

  1. Write the photosynthesis equation. (Answer: 6CO₂ + 12H₂O → C₆H₁₂O₆ + 6O₂ + 6H₂O, requires sunlight and chlorophyll.)
  2. Why is transpiration called a 'necessary evil'? (Answer: It loses water but drives water transport and cools the plant.)
  3. Xylem transports ___. Phloem transports ___. (Answer: Water+minerals; food/sucrose.)
  4. Which plant organelle carries out photosynthesis? (Answer: Chloroplast.)
  5. What gas is released during photosynthesis? (Answer: Oxygen.)
  6. Name two factors that increase transpiration rate. (Answer: High temperature, low humidity, wind, high light intensity.)

Comparison — Photosynthesis vs Respiration in Plants

AspectPhotosynthesisRespiration
WhenDAY only (requires light)DAY AND NIGHT (continuous)
WhereChloroplastsMitochondria (and cytoplasm)
CO₂Consumed (raw material)Released (product)
O₂Released (product)Consumed (raw material)
GlucoseProducedBroken down
EnergySTORED (endergonic)RELEASED (exergonic)
'During the day, plants do BOTH — photosynthesis produces O₂, respiration consumes it. Net O₂ release = photosynthesis O₂ − respiration O₂. At night, only respiration occurs → plants take in O₂ and release CO₂. This is why hospitals remove plants from wards at night.'

AP Exam Diagram Practice

Draw and label: (a) T.S. of leaf showing chloroplasts in mesophyll cells. (b) Stomata — open and closed states. (c) Xylem and phloem in a stem cross-section. 'Diagrams are a RELIABLE source of marks. Spend 5 minutes, use a sharp pencil, label clearly with horizontal indicator lines.'

Key formulas & results

Everything you need to memorise, in one card. Screenshot this for revision.

Photosynthesis equation
6CO₂ + 12H₂O →(Sunlight + Chlorophyll)→ C₆H₁₂O₆ + 6O₂ + 6H₂O
Site: chloroplasts (mesophyll cells). Raw materials: CO₂ (stomata), H₂O (roots+xylem), sunlight.
Light reaction
Location: THYLAKOID membranes. Requires LIGHT. Photolysis of water → O₂ released. Produces ATP and NADPH.
Oxygen released in photosynthesis comes from water (not CO₂)
Dark reaction (Calvin cycle)
Location: STROMA. Does NOT directly require light. CO₂ fixed using ATP + NADPH → Glucose.
Called 'dark' because it doesn't need light directly; still happens during day
Factors affecting photosynthesis
Light intensity · CO₂ concentration · Temperature · Water availability (stomata close when water scarce → stops photosynthesis)
In Rayalaseema drought: water = limiting factor even with abundant sunlight
Xylem vs Phloem (transport)
Xylem: WATER + minerals, ONE-WAY up, DEAD cells, TRANSPIRATION PULL (passive). Phloem: FOOD (sucrose), TWO-WAY, LIVING cells (sieve tubes + companion cells), ACTIVE TRANSPORT (ATP).
The most tested comparison in this chapter
Cohesion-tension theory
Transpiration at leaves → negative pressure (tension) → transmitted down continuous water column → water pulled up from roots. Cohesion: water molecules stick to each other. Adhesion: water sticks to xylem walls.
Explains how trees transport water up to 80 metres
Transpiration definition and role
Transpiration = loss of water vapour mainly through STOMATA. Role: (1) Creates TRANSPIRATION PULL — drives xylem transport. (2) COOLING — evaporative cooling prevents leaf scorching.
'Necessary evil': wastes water BUT drives transport and cools the plant
Stomatal mechanism
Guard cells pump K⁺ in → water enters by osmosis → turgid → pore OPENS. K⁺ out → flaccid → pore CLOSES. Light triggers opening; darkness/drought triggers closing.
CO₂ concentration and abscisic acid also regulate stomata
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Common mistakes & fixes

These are the exact errors that cost students marks in board exams. Read them once, save yourself the trouble.

WATCH OUT
Saying plants only carry out photosynthesis and do not respire
Plants ALWAYS respire — day AND night. During the DAY, photosynthesis rate > respiration rate, so net O₂ is released. At NIGHT, only respiration occurs — plants take in O₂ and release CO₂.
WATCH OUT
Saying transpiration is wasteful
Transpiration is called a 'NECESSARY EVIL.' It loses water, but drives WATER TRANSPORT via xylem and COOLS the plant. Without transpiration: no water transport, no mineral delivery, photosynthesis would fail.
WATCH OUT
Saying the O₂ in photosynthesis comes from CO₂
The O₂ released during photosynthesis comes from the PHOTOLYSIS OF WATER (during the light reaction) — NOT from CO₂. This was proved by using isotope-labelled water (¹⁸O₂ in water appears in product O₂).

Practice problems

Work through this chapter's problems as a readiness check — reveal each solution, mark yourself honestly, and get your gap report at the end.

Readiness check

Are you exam-ready for Plant Physiology — Photosynthesis, Transpiration and Transport?

5 problems from this chapter. Try each one, reveal the worked solution, mark yourself honestly — get your gap report at the end.

5 questions~4 min worth ~10 marks in Andhra Pradesh (BIEAP) exams

5-minute revision

The whole chapter, distilled. Read this the night before the exam.

  • Photosynthesis equation: 6CO₂ + 12H₂O → C₆H₁₂O₆ + 6O₂ + 6H₂O (sunlight + chlorophyll).
  • Site: chloroplasts. Raw materials: CO₂ (stomata) and H₂O (roots + xylem).
  • Light reaction: thylakoid, requires light, photolysis of H₂O → O₂, produces ATP + NADPH.
  • Dark reaction (Calvin cycle): stroma, fixes CO₂ → glucose using ATP + NADPH.
  • Four factors: light intensity, CO₂ concentration, temperature, water availability.
  • Xylem: water one-way up, dead cells, transpiration pull (passive).
  • Phloem: food two-way, living cells (sieve tubes + companion cells), ATP (active).
  • Transpiration: loss of water vapour via stomata → 'necessary evil' (drives transport + cools).
  • Cohesion-tension theory: evaporation → tension → water pulled up through continuous column.
  • Plants photosynthesize only in DAY; plants RESPIRE both day and night.

Andhra Pradesh (BIEAP) marks blueprint

Where the marks come from in this chapter — so you can plan your prep.

Typical chapter weightage: 8–10 marks

Question typeMarks eachTypical countWhat it tests
Very Short Answer12–3Name, define, one-line explanation
Short Answer22Explain with one example
Long Answer41Detailed explanation with diagram
Prep strategy
  • AP Board biology questions reward diagram labelling — practise diagrams until you can draw from memory
  • Know the function of every structure you name — 'state and explain' is the most common question type
  • Practise 4-mark questions with full paragraph answers (4 valid points = 4 marks)

Where this shows up in the real world

This chapter isn't just an exam topic — it lives in the world around you.

Rice cultivation in the Krishna-Godavari delta

AP is India's Rice Bowl. Rice photosynthesis converts CO₂ + H₂O → glucose, which feeds millions. The Godavari and Krishna rivers provide the water for xylem transport. Understanding photosynthesis IS understanding food security in AP.

Greenhouse farming

Commercial greenhouses in AP (for flowers, tomatoes) pump extra CO₂ and control temperature to maximise photosynthesis rate — direct application of limiting factors knowledge.

Deforestation and climate change

Forests in the Eastern Ghats absorb CO₂ through photosynthesis. Deforestation reduces this carbon sink — direct connection between plant physiology and climate change.

Drought-resistant crops (Rayalaseema)

C₄ plants like sorghum are more water-efficient than C₃ rice — they keep stomata closed more while still fixing CO₂. This is why drought-prone Rayalaseema farmers grow sorghum (jowar) instead of rice.

Exam strategy

Battle-tested tips from teachers and toppers for this chapter.

1
Write the photosynthesis equation from memory at the start of any plant physiology answer — shows mastery and organises the rest of the answer.
2
For xylem/phloem comparison: memorise the 4-column table exactly. This table can earn 4 marks if all columns are complete.
3
Transpiration 'necessary evil' is a 2-3 mark question — structure your answer as: (1) necessary because... (2) evil because... — parallel structure earns full marks.
4
Experiment descriptions: always include the CONTROL (second bell jar without KOH), the OBSERVATION (iodine test result), and the CONCLUSION.
5
For 8-mark answers: use subheadings (Equation, Light Reaction, Dark Reaction, Experiments, Factors, AP Context) — examiners reward organised answers.

Going beyond the textbook

For olympiad aspirants and curious learners — topics that build on this chapter.

STRETCH
C₄ photosynthesis (in sugarcane, maize) uses a CO₂-concentrating mechanism in bundle sheath cells, reducing photorespiration. C₄ plants are significantly more efficient in hot, high-light conditions — relevant to AP's tropical climate.
STRETCH
The Calvin cycle enzyme RuBisCO is the most abundant protein on Earth — it fixes all the CO₂ in all photosynthesis worldwide. Improving its efficiency is a major goal of agricultural biotechnology.
STRETCH
In crassulacean acid metabolism (CAM) plants (cacti, succulents), stomata open at NIGHT to fix CO₂ — avoiding daytime water loss. This is an extreme adaptation for desert survival.
STRETCH
Artificial photosynthesis — splitting water with sunlight to produce hydrogen fuel — is a major area of renewable energy research inspired directly by the light reaction of photosynthesis.

Where else this chapter is tested

CBSE board isn't the only one — other exams test this chapter too.

AP Board SSC (Class 10)Transportation (xylem/phloem) and life processes (photosynthesis + respiration) build directly on this chapter
EAMCET (Class 12 entrance)Detailed biochemistry of light and dark reactions; limiting factors in agricultural context
Biology Olympiad (NSEB)Calvin cycle chemistry, C₃/C₄ pathways, and photosystem structures tested at depth

Questions students ask

The real ones — pulled from the Q&A community and tutor sessions.

Yes — photosynthesis requires light (for the light reaction). Respiration happens both day and night. During daytime, photosynthesis rate > respiration rate, so net O₂ is released and CO₂ is absorbed.

In cold/dark conditions, plants stop producing chlorophyll. Existing chlorophyll degrades. Without green chlorophyll, the yellow/orange pigments (carotenoids) become visible. Without chlorophyll, photosynthesis stops.

The O₂ comes from WATER (photolysis of H₂O in the light reaction). This was proved using isotope-labelled water (H₂¹⁸O) — the ¹⁸O appears in the released O₂, not in glucose.

Dead cells have no cytoplasm — forming unobstructed hollow tubes for water flow. Lignified dead walls are rigid enough to withstand the negative pressure (tension) created by transpiration pull without collapsing.

When water is scarce, stomata CLOSE to prevent water loss. Closed stomata prevent CO₂ from entering the leaf. Without CO₂, photosynthesis stops. So drought indirectly stops photosynthesis, even if there is plenty of sunlight.
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Last reviewed on 28 May 2026. Written and reviewed by subject-matter experts — read about our process.
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