Respiration In Plants MCQs With Answers – Part 4 (Class 11 Biology)
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Respiration in Plants MCQs with Answers – Part 4 (Class 11 Biology)

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311. A chemical makes the inner mitochondrial membrane freely permeable to protons without directly inhibiting glycolytic enzymes or TCA-cycle substrate-level phosphorylation. Which response is most likely?
ⓐ. Oxidative ATP formation falls; direct ATP formation initially continues
ⓑ. Every ATP-forming reaction stops before electron transport changes
ⓒ. The proton gradient increases and ATP synthase produces more ATP
ⓓ. PEP and succinyl CoA begin donating electrons directly to oxygen
312. Four treatments are applied separately to respiring cells.
TreatmentPrimary direct effect
P. Block PEP-to-pyruvate conversionLoss of one glycolytic substrate-level phosphorylation
Q. Block ATP synthaseLoss of oxidative phosphorylation
R. Block succinyl CoA-to-succinate conversionLoss of TCA-cycle GTP formation
S. Remove oxygen while glycolytic \(\mathrm{NAD^+}\) regeneration remains possibleLoss of sustained oxidative phosphorylation
Which pair directly removes oxidative phosphorylation without directly blocking a substrate-level phosphorylation enzyme?
ⓐ. P and R
ⓑ. P and Q
ⓒ. Q and S
ⓓ. R and S
313. A graph follows an aerobic cell through two changes. At time \(t_1\), oxygen is removed. NADH rises, oxygen consumption becomes zero and mitochondrial ATP production falls, while lactate begins accumulating. At time \(t_2\), oxygen is restored. NADH declines, lactate accumulation slows and mitochondrial ATP production recovers. The best interpretation is:
ⓐ. Oxygen removal directly activates the TCA cycle and inhibits glycolysis
ⓑ. Lactate is the terminal product of complete glucose oxidation
ⓒ. Restoration of oxygen forces all ATP production to become substrate-level
ⓓ. oxygen availability controls carrier oxidation and determines later pyruvate fate
314. A waterlogged germinating seed has abundant stored carbohydrate but limited access to oxygen. Ethanol and carbon dioxide accumulate, the seed gains only a small amount of ATP per glucose and reserve consumption becomes rapid. Which explanation fits all observations?
ⓐ. Complete aerobic oxidation is operating with an RQ of one
ⓑ. alcoholic fermentation regenerates \(\mathrm{NAD^+}\) while producing only a small ATP yield
ⓒ. Fatty acids are the only substrate and enter exclusively through glycolysis
ⓓ. Oxidative phosphorylation is producing the ethanol and carbon dioxide
315. Four respiratory profiles are shown below.
ProfileOxygen conditionMajor end productsATP patternPrincipal location beyond glycolysis
PPresent\(\mathrm{CO_2}\) and \(\mathrm{H_2O}\)High theoretical yieldMatrix and inner membrane
QAbsentEthanol and \(\mathrm{CO_2}\)\(\mathrm{2}\) net ATPCytoplasm
RLimitedLactic acid\(\mathrm{2}\) net ATPCytoplasm
SPresentLactic acid only\(\mathrm{38}\) ATP from fermentationInner membrane
Which profile is biologically inconsistent?
ⓐ. Profile P
ⓑ. Profile Q
ⓒ. Profile S
ⓓ. Profile R
316. Use the pathway arrangement described below. Region P contains glucose, PGAL and pyruvate. An arrow carries pyruvate into Region Q, where acetyl CoA, citrate and oxaloacetate occur. Reduced carriers formed in Q transfer electrons to complexes in Boundary R, where oxygen is reduced and ATP synthase operates. Which interpretation is correct?
ⓐ. P is cytoplasm, Q is matrix and R is inner mitochondrial membrane
ⓑ. P is matrix, Q is cytoplasm and R is plasma membrane
ⓒ. P is intermembrane space, Q is inner membrane and R is cytoplasm
ⓓ. P is cytoplasm, Q is outer mitochondrial membrane and R is matrix
317. Two glucose molecules undergo complete aerobic oxidation under the theoretical \(\mathrm{38\ ATP}\)-per-glucose assumptions. What combined gas and energy values are expected?
ⓐ. \(\mathrm{6O_2\ consumed,\ 12CO_2\ evolved,\ 38ATP}\)
ⓑ. \(\mathrm{12O_2\ consumed,\ 6CO_2\ evolved,\ 76ATP}\)
ⓒ. \(\mathrm{12O_2\ consumed,\ 12CO_2\ evolved,\ 38ATP}\)
ⓓ. \(\mathrm{12O_2\ consumed,\ 12CO_2\ evolved,\ 76ATP}\)
318. Which relationship best classifies the major pathways involved in glucose respiration?
ⓐ. Fermentation is the common pathway that occurs before glycolysis and aerobic respiration
ⓑ. Glycolysis is upstream; pyruvate then enters fermentation or mitochondrial oxidation
ⓒ. Oxidative phosphorylation includes glycolysis, fermentation and the TCA cycle as membrane reactions
ⓓ. The TCA cycle is the common initial pathway for both alcoholic and lactic acid fermentation
319. Three inhibitors are tested separately in aerobic cells. P. A hexokinase inhibitor causes glucose accumulation and lowers pyruvate, carbon dioxide and ATP formation. Q. A pyruvate-transport inhibitor causes cytosolic pyruvate accumulation and lowers matrix carbon-dioxide production. R. A complex-IV inhibitor causes reduced electron carriers to accumulate while oxygen consumption falls. Which evaluation is correct?
ⓐ. Only P identifies the inhibited step correctly
ⓑ. Only Q and R identify their inhibited steps correctly
ⓒ. P, Q and R each show the expected upstream and downstream pattern
ⓓ. None of the records is consistent with respiratory compartmentation
320. An illuminated green leaf has an adequate carbohydrate supply and is exchanging gases normally. At time \(t_1\), it is transferred to darkness. At time \(t_2\), external oxygen is also removed while carbohydrate remains available. Which sequence is most likely?
ⓐ. Photosynthetic oxygen stops at \(t_1\); continuing respiration may favour fermentation after \(t_2\)
ⓑ. Respiration stops at \(t_1\); photosynthesis continues, and the TCA cycle accelerates after \(t_2\)
ⓒ. Glycolysis stops at \(t_2\), while oxidative phosphorylation continues without oxygen
ⓓ. Carbon dioxide production ends at \(t_1\), and glucose becomes the terminal electron acceptor after \(t_2\)
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