Respiration In Plants MCQs With Answers – Part 2 (Class 11 Biology)
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Respiration in Plants MCQs with Answers – Part 2 (Class 11 Biology)

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111. Arrange the events of alcoholic fermentation in their correct order. P. Pyruvate decarboxylase acts on pyruvate. Q. Acetaldehyde and \(\mathrm{CO_2}\) are formed. R. Alcohol dehydrogenase transfers reducing equivalents to acetaldehyde. S. Ethanol forms while \(\mathrm{NAD^+}\) is regenerated.
ⓐ. \(P\rightarrow R\rightarrow Q\rightarrow S\)
ⓑ. \(P\rightarrow Q\rightarrow R\rightarrow S\)
ⓒ. \(Q\rightarrow P\rightarrow S\rightarrow R\)
ⓓ. \(R\rightarrow S\rightarrow P\rightarrow Q\)
112. Pyruvate decarboxylase is completely inhibited in anaerobic yeast while glycolysis initially continues. The expected immediate pattern is:
ⓐ. decreased pyruvate with increased acetaldehyde and ethanol
ⓑ. increased acetaldehyde with unchanged carbon-dioxide release
ⓒ. normal ethanol formation with no change in \(\mathrm{NAD^+}\) regeneration
ⓓ. more pyruvate with less acetaldehyde, ethanol and \(\mathrm{CO_2}\)
113. Four glucose molecules complete glycolysis and all resulting pyruvate enters alcoholic fermentation. How many acetaldehyde molecules and carbon-dioxide molecules are formed during the decarboxylation step?
ⓐ. \(\mathrm{8}\) acetaldehyde and \(\mathrm{8CO_2}\)
ⓑ. \(\mathrm{4}\) acetaldehyde and \(\mathrm{8CO_2}\)
ⓒ. \(\mathrm{8}\) acetaldehyde and \(\mathrm{4CO_2}\)
ⓓ. \(\mathrm{4}\) acetaldehyde and \(\mathrm{4CO_2}\)
114. Anaerobic yeast is treated with an inhibitor of alcohol dehydrogenase. Acetaldehyde and \(\mathrm{NADH+H^+}\) accumulate, while ethanol and \(\mathrm{NAD^+}\) formation decline. The observations indicate that alcohol dehydrogenase normally:
ⓐ. converts glucose directly into pyruvate and ATP
ⓑ. removes carbon dioxide from pyruvate
ⓒ. reduces acetaldehyde using \(\mathrm{NADH+H^+}\)
ⓓ. transfers electrons from oxygen to ethanol
115. Assertion: Formation of ethanol during alcoholic fermentation is associated with regeneration of \(\mathrm{NAD^+}\). Reason: Carbon dioxide is released when pyruvate is converted into acetaldehyde.
ⓐ. 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
116. A two-step pathway is described. Reaction P converts \(\mathrm{3C}\) pyruvate into a \(\mathrm{2C}\) compound with release of \(\mathrm{CO_2}\). Reaction Q converts the \(\mathrm{2C}\) compound into ethanol while \(\mathrm{NADH+H^+}\) becomes \(\mathrm{NAD^+}\). P and Q are catalysed by:
ⓐ. alcohol dehydrogenase and pyruvate dehydrogenase
ⓑ. lactate dehydrogenase and pyruvate decarboxylase
ⓒ. hexokinase and alcohol dehydrogenase
ⓓ. pyruvate decarboxylase and alcohol dehydrogenase
117. Consider the following statements about lactic acid fermentation. I. Pyruvate is reduced directly to lactic acid. II. Carbon dioxide is not released during this conversion. III. The pathway occurs only in bacteria. IV. \(\mathrm{NADH+H^+}\) is oxidised to regenerate \(\mathrm{NAD^+}\).
ⓐ. I and III only
ⓑ. II, III and IV only
ⓒ. I, II and IV only
ⓓ. I, II, III and IV
118. Two systems are maintained under limited oxygen.
SystemObservation
P. Bacterial culturePyruvate falls, lactic acid rises and no fermentative \(\mathrm{CO_2}\) is detected
Q. Contracting muscleLactic acid rises while the \(\mathrm{NAD^+}\) supply is temporarily maintained
The common pathway operating in P and Q is:
ⓐ. reduction of pyruvate through lactic acid fermentation
ⓑ. decarboxylation of pyruvate through alcoholic fermentation
ⓒ. complete mitochondrial oxidation of acetyl CoA
ⓓ. direct conversion of lactate into ethanol
119. During intense muscular activity, oxygen supply becomes inadequate and lactate dehydrogenase is experimentally inhibited. The most likely immediate metabolic effect is:
ⓐ. increased conversion of pyruvate into lactate with rapid \(\mathrm{NAD^+}\) formation
ⓑ. complete oxidation of pyruvate in the cytoplasm
ⓒ. increased carbon-dioxide release from lactic acid fermentation
ⓓ. reduced \(\mathrm{NAD^+}\) regeneration followed by slowing of glycolysis
120. A sprinter’s muscle cells consume ATP rapidly. During a period when oxygen delivery cannot match demand, lactic acid production rises. The immediate metabolic advantage of this response is:
ⓐ. complete extraction of all energy remaining in pyruvate
ⓑ. regeneration of \(\mathrm{NAD^+}\) for continued glycolysis
ⓒ. production of carbon dioxide for use by mitochondria
ⓓ. formation of a large oxidative-phosphorylation ATP yield
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