Respiration In Plants MCQs With Answers – Part 1 (Class 11 Biology)
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Respiration in Plants MCQs with Answers – Part 1 (Class 11 Biology)

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11. A defining feature of cellular respiration is the controlled oxidation of complex organic compounds, including the breaking of [blank] that releases considerable energy.
ⓐ. carbon-carbon bonds in substrates
ⓑ. peptide bonds in all cellular enzymes
ⓒ. phosphodiester bonds in chromosomes
ⓓ. hydrogen bonds between water molecules
12. Match each potential respiratory substrate with the description that fits it best. A Column II entry is used once.
Column IColumn II
P. Carbohydrate1. Commonly favoured respiratory substrate
Q. Fat2. Energy-rich storage reserve that may be mobilised
R. Protein3. Nitrogen-containing reserve that may supply respiratory carbon
S. Organic acid4. Acidic non-carbohydrate compound that may also be oxidised
ⓐ. P-2, Q-1, R-4, S-3
ⓑ. P-1, Q-3, R-2, S-4
ⓒ. P-1, Q-2, R-3, S-4
ⓓ. P-4, Q-2, R-1, S-3
13. Consider the following statements about respiratory substrates. I. Carbohydrates are commonly preferred as respiratory substrates. II. Fats, proteins and organic acids may also be oxidised under suitable conditions. III. ATP is the main carbon-containing substrate from which respiration begins. IV. The substrate used by a tissue can depend on availability and physiological condition.
ⓐ. I and III only
ⓑ. II and IV only
ⓒ. I, II and IV only
ⓓ. I, II, III and IV
14. During germination, a seed's readily available carbohydrate falls while stored lipid is mobilised and oxygen consumption continues. The strongest conclusion is that:
ⓐ. fat can serve as a respiratory substrate when carbohydrate is scarce
ⓑ. oxygen consumption proves that only carbohydrate is being oxidised
ⓒ. lipid mobilisation stops respiration until photosynthesis begins
ⓓ. ATP becomes the carbon substrate replacing both fat and carbohydrate
15. A tissue is examined under four nutritional conditions.
ConditionAvailable carbohydrateMobilisation of another reserveRespiratory gas exchange
PHighLowContinues
QLowHigh fat mobilisationContinues
RLowHigh protein breakdownContinues
SLowNone detectedFalls sharply
The combined pattern in Q, R and S most strongly supports which inference?
ⓐ. Gas exchange continues only when carbohydrate remains abundant
ⓑ. Protein and fat must first be converted completely into glucose
ⓒ. Reserve mobilisation has no relation to continued respiration
ⓓ. alternative reserves sustain respiration when carbohydrate is scarce
16. Assertion: Cellular respiration is gradual and enzyme-controlled rather than a rapid uncontrolled oxidation. Reason: ATP formed during respiration can later supply energy to cellular activities.
ⓐ. Both Assertion and Reason are true, and Reason correctly explains Assertion
ⓑ. Both Assertion and Reason are true, but Reason does not explain Assertion
ⓒ. Assertion is true, but Reason is false
ⓓ. Assertion is false, but Reason is true
17. Two oxidation processes are compared.
FeatureProcess PProcess Q
Rate of energy releaseGradualRapid
ControlMany enzyme-catalysed stepsNo cellular enzyme sequence
Energy outcomePart captured in ATPLarge fraction dispersed as heat
Process P and Process Q are, respectively:
ⓐ. cellular respiration and direct combustion
ⓑ. direct combustion and cellular respiration
ⓒ. aerobic respiration and anaerobic respiration
ⓓ. photosynthesis and cellular respiration
18. Equal samples of a cell extract containing glucose are prepared. In Treatment P, respiratory enzymes remain active; in Treatment Q, the enzymes are denatured before incubation. Only P shows gradual oxygen uptake and a rise in ATP. The strongest supported inference is:
ⓐ. glucose releases ATP spontaneously whenever oxygen is present
ⓑ. oxygen uptake alone forms ATP without substrate oxidation
ⓒ. enzyme-controlled reactions are needed for coupled respiration
ⓓ. denaturation increases the efficiency of energy capture from glucose
19. Arrange the stages that connect controlled substrate oxidation with cellular work. P. An organic substrate undergoes an enzyme-catalysed oxidation step. Q. Part of the released energy is conserved through an energy-coupling process. R. ATP is formed from ADP and inorganic phosphate. S. ATP is used during an energy-requiring cellular activity.
ⓐ. \(Q \rightarrow P \rightarrow R \rightarrow S\)
ⓑ. \(P \rightarrow Q \rightarrow R \rightarrow S\)
ⓒ. \(P \rightarrow R \rightarrow S \rightarrow Q\)
ⓓ. \(R \rightarrow P \rightarrow Q \rightarrow S\)
20. Imagine a hypothetical cell that releases the same total chemical energy from glucose in one rapid, uncontrolled reaction instead of through a staged respiratory pathway. The most likely consequence would be:
ⓐ. more energy stored in ATP with less heat production
ⓑ. unchanged ATP capture since total released energy is unchanged
ⓒ. complete prevention of heat release during substrate oxidation
ⓓ. greater heat loss with less energy conserved in usable form
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