Respiration In Plants MCQs With Answers – Part 5 (Class 11 Biology)
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Respiration in Plants MCQs with Answers – Part 5 (Class 11 Biology)

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411. A reconstituted system contains three fractions. Region P contains cytoplasmic glycolytic enzymes. Region Q contains soluble mitochondrial-matrix enzymes. Boundary R contains correctly oriented inner-membrane respiratory complexes and ATP synthase. Glucose, ADP, inorganic phosphate and oxygen are supplied, and necessary metabolites can move between included fractions. What is the smallest combination capable of converting glucose completely to carbon dioxide and water while producing the major oxidative ATP yield?
ⓐ. Region P only
ⓑ. Regions P and Q only
ⓒ. Regions Q and R only
ⓓ. Regions P, Q and R
412. A tissue is stated to oxidise only protein with \(\mathrm{RQ=0.9}\) and fat with \(\mathrm{RQ=0.7}\) under aerobic conditions. Repeated measurements give an overall \(\mathrm{RQ=1.0}\). Which conclusion is justified?
ⓐ. equal oxygen use by protein and fat must produce an RQ of one
ⓑ. the two-substrate assumption or the gas measurements must be re-examined
ⓒ. fat oxidation alone can raise the quotient above the protein value
ⓓ. the result proves that protein has an RQ greater than one
413. Three molecules enter respiration at different points: glucose at the beginning of glycolysis, PGAL at the triose-payoff stage and acetyl CoA at the TCA-cycle entry point. Assuming complete oxidation from each stated entry, which ordering applies both to the number of carbon-dioxide molecules ultimately released and to the number of ATP or GTP molecules formed directly by substrate-level phosphorylation?
ⓐ. Acetyl CoA \(\gt\) PGAL \(\gt\) glucose
ⓑ. Glucose \(\gt\) acetyl CoA \(\gt\) PGAL
ⓒ. Glucose \(\gt\) PGAL \(\gt\) acetyl CoA
ⓓ. PGAL \(\gt\) glucose \(\gt\) acetyl CoA
414. Conversion of alpha-ketoglutarate into succinyl CoA is blocked. Which alternative respiratory input can bypass the blocked step and still permit formation of GTP, FADH\(_2\), NADH and regenerated oxaloacetate downstream?
ⓐ. deaminated amino-acid carbon entering as succinyl CoA
ⓑ. Fatty-acid-derived acetyl CoA entering citrate formation
ⓒ. Glycerol-derived carbon entering near PGAL
ⓓ. Pyruvate entering the mitochondrial matrix
415. From a single glucose, glycolysis forms two pyruvates. Pyruvate P undergoes alcoholic fermentation, whereas Pyruvate Q undergoes complete aerobic oxidation. Which final profile is expected?
ⓐ. Two ethanol, two lactate and no carbon dioxide
ⓑ. One ethanol, three carbon dioxide and no oxidative phosphorylation
ⓒ. one ethanol, four carbon dioxide and ATP by both phosphorylation modes
ⓓ. No ethanol, six carbon dioxide and the full theoretical \(\mathrm{38\ ATP}\)
416. Two treatments are applied separately to inner-mitochondrial-membrane preparations. Treatment P removes a small mobile protein from the membrane surface and interrupts transfer from complex III to complex IV. Treatment Q removes a lipid-soluble mobile carrier and interrupts transfer from both complexes I and II to complex III. The removed carriers in P and Q are, respectively:
ⓐ. Ubiquinone and cytochrome c
ⓑ. Cytochrome c and ubiquinone
ⓒ. Complex IV and complex I
ⓓ. \(F_1\) and \(F_0\)
417. A cell has two simultaneous defects: glucose cannot pass through the early ATP-investment portion of glycolysis, and cytosolic pyruvate cannot enter the mitochondrial matrix. The TCA-cycle and electron-transport systems remain functional. Which pair of alternative substrates can still supply mitochondrial respiration downstream of both defects?
ⓐ. fatty-acid-derived acetyl CoA plus a deaminated TCA intermediate
ⓑ. Glycerol converted to PGAL and glucose released from stored carbohydrate
ⓒ. Sucrose hydrolysed into glucose and fructose
ⓓ. Glycerol converted to PGAL and pyruvate produced from fructose
418. Consider the following statements about responses to changing oxygen availability. I. A facultative anaerobe may shift from aerobic respiration to fermentation when oxygen is removed. II. Its ATP yield per glucose generally falls after this shift. III. An obligate anaerobe necessarily grows faster when oxygen is introduced. IV. Fermentation products may accumulate in the oxygen-free condition.
ⓐ. I and III only
ⓑ. II and III only
ⓒ. I, III and IV only
ⓓ. I, II and IV only
419. Green and non-green sectors of a variegated leaf are enclosed together in a transparent chamber containing carbon dioxide but no external oxygen. In light, oxygen around the non-green sector remains sufficient for mitochondrial respiration. Covering only the green sector with an opaque screen causes oxygen around the non-green sector to fall. The strongest inference is:
ⓐ. Non-green cells begin photosynthesis when oxygen is scarce
ⓑ. The green sector transports ATP directly into the non-green sector
ⓒ. oxygen from the green sector diffuses locally to adjacent non-green tissue
ⓓ. Carbon dioxide becomes the terminal respiratory acceptor in the covered leaf
420. Begin with the theoretical \(\mathrm{38\ ATP}\) balance for one glucose. One of the two glycolytic NADH molecules does not contribute to mitochondrial ATP formation, and one acetyl CoA is diverted to fatty-acid synthesis after its link reaction but before entering the TCA cycle. All other counted events remain unchanged. What revised ATP total is obtained?
ⓐ. \(\mathrm{20\ ATP}\)
ⓑ. \(\mathrm{26\ ATP}\)
ⓒ. \(\mathrm{35\ ATP}\)
ⓓ. \(\mathrm{23\ ATP}\)

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