State Exam — General Science
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Showing 31–40 of 96 questions
Q.31 Medium Botany
The casparian strip in plant roots is composed primarily of:
ACellulose and pectin
BSuberin and lignin
CChitin and protein
DKeratin and elastin
Correct Answer:  B. Suberin and lignin
Explanation:

The casparian strip is a hydrophobic barrier of suberin and lignin in the endodermis that prevents apoplastic transport and regulates ion uptake.

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Q.32 Medium Botany
The quantum yield of photosynthesis (φ) represents:
AThe number of CO₂ molecules fixed per photon absorbed
BThe wavelength of light absorbed
CThe rate of electron transport
DThe concentration of chlorophyll
Correct Answer:  A. The number of CO₂ molecules fixed per photon absorbed
Explanation:

Quantum yield is the ratio of CO₂ fixed to photons absorbed, typically 0.05-0.1 (5-10 CO₂ per 100 photons).

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Q.33 Medium Botany
Guttation in plants occurs due to:
ATranspiration
BRoot pressure and high humidity conditions
CPhotorespiration
DOsmotic stress
Correct Answer:  B. Root pressure and high humidity conditions
Explanation:

Guttation is the exudation of xylem sap through hydathodes, caused by positive root pressure, especially in early morning when transpiration is low.

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Q.34 Medium Botany
The turgor pressure in plant cells is maintained by which osmotically active substances?
ACellulose and starch
BSoluble sugars, organic acids, and mineral ions
CProteins and lipids
DChlorophyll and carotenoids
Correct Answer:  B. Soluble sugars, organic acids, and mineral ions
Explanation:

Osmotically active solutes like glucose, sucrose, malate, and K⁺ ions accumulate in vacuoles to maintain turgor pressure and cell rigidity.

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Q.35 Medium Botany
The Hatch-Slack cycle in C4 plants first produces which compound?
AOxaloacetate (4-carbon)
B3-Phosphoglycerate (3-carbon)
CMalate (4-carbon)
DPyruvate (3-carbon)
Correct Answer:  A. Oxaloacetate (4-carbon)
Explanation:

In C4 photosynthesis, CO₂ combines with phosphoenolpyruvate (PEP) to form oxaloacetate (4-carbon), catalyzed by PEP carboxylase.

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Q.36 Medium Botany
The transpiration pull mechanism in xylem transport depends on which principle?
AOsmotic gradient
BCohesion-tension theory and water's high surface tension
CActive transport of ions
DPressure exerted by companion cells
Correct Answer:  B. Cohesion-tension theory and water's high surface tension
Explanation:

Transpiration creates negative pressure (tension) in xylem; water cohesion allows continuous columns to be pulled upward against gravity.

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Q.37 Medium Botany
The non-cyclic photophosphorylation in photosystem II produces:
AATP only
BNADPH only
CBoth ATP and NADPH, and releases O₂
DGlucose directly
Correct Answer:  C. Both ATP and NADPH, and releases O₂
Explanation:

Non-cyclic photophosphorylation involves PSII and PSI, producing ATP, NADPH, and O₂ from water photolysis.

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Q.38 Medium Botany
The reduction phase of Calvin cycle produces which molecule as the final product?
APyruvate
BGlucose
CGlyceraldehyde-3-phosphate
DOxaloacetate
Correct Answer:  C. Glyceraldehyde-3-phosphate
Explanation:

G3P (Glyceraldehyde-3-phosphate) is the final product of the reduction phase where 3-PG is reduced using ATP and NADPH from light reactions.

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Q.39 Medium Botany
C3 plants show a phenomenon of photorespiration. What is the primary substrate that reacts with RuBP when O2 concentration is high?
APhosphoenolpyruvate
BPhosphoglycolate
COxygen (O2)
DCarbon monoxide
Correct Answer:  C. Oxygen (O2)
Explanation:

When O2 concentration is high, RuBisCO catalyzes oxygenase activity, causing O2 to react with RuBP instead of CO2, initiating photorespiration.

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Q.40 Medium Botany
The phenomenon where plants lose water as liquid droplets from leaf margins is called:
ATranspiration
BExudation
CImbibition
DOsmosis
Correct Answer:  B. Exudation
Explanation:

Exudation or guttation occurs when root pressure forces water out through specialized pores (hydathodes) as liquid water droplets, typically observed in early morning.

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