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

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411. All light intensities in the following treatments lie within the linear low-light range, and contributions from different wavelengths are additive.
Wavelength regionRelative action coefficient
Blue\(0.8\)
Green\(0.2\)
Red\(1.0\)
Treatment P supplies \(40\) blue-light units and \(60\) green-light units. Treatment Q supplies \(20\) blue-light units and \(80\) red-light units. Which prediction is correct?
ⓐ. P produces \(80\) units, while Q produces \(100\) units
ⓑ. P produces \(44\) units, while Q produces \(84\) units
ⓒ. Treatment P produces more since it contains a larger blue-light component
ⓓ. Treatment Q produces \(96\) units compared with \(44\) units for P
412. In an Engelmann-type experiment, aerobic bacteria cluster mainly in the blue and red regions around an illuminated filamentous alga. A concern is raised that the bacteria might move preferentially toward blue and red light even without an oxygen gradient. Which control most directly tests this alternative explanation?
ⓐ. Repeat the bacterial distribution test without the alga while maintaining uniform oxygen
ⓑ. Replace the aerobic bacteria with additional chlorophyll-containing algal cells
ⓒ. Illuminate the original preparation only with white light and ignore bacterial position
ⓓ. Remove carbon dioxide while keeping the alga and bacteria under the spectrum
413. Stroma lamellae are selectively destroyed in a chloroplast, while granal membranes containing both photosystems and the stromal Calvin-cycle enzymes remain functional. Which change is most likely under illumination?
ⓐ. Non-cyclic electron flow stops completely, but cyclic photophosphorylation remains normal
ⓑ. Oxygen, NADPH and supplementary cyclic ATP all remain unchanged
ⓒ. Cyclic ATP supplementation falls, while grana still form oxygen and NADPH
ⓓ. RuBisCO is destroyed since it is embedded in the stroma lamellae
414. Destarched isolated stem segments are treated under identical carbon-dioxide and temperature conditions. An illuminated green stem segment forms starch, while an illuminated non-green segment and a green segment kept in darkness remain starch-negative. Which conclusion is best supported?
ⓐ. green stems can photosynthesise without illumination
ⓑ. green organs other than leaves can photosynthesise
ⓒ. non-green stems can photosynthesise under illumination
ⓓ. green stems can photosynthesise only in darkness
415. Arrange the following discoveries from the broadest environmental observation to the most specific evidence about atomic origin. P. A plant restores enclosed air altered by a candle or animal. Q. Restoration occurs in light and is associated with green tissue. R. Blue and red wavelengths produce the greatest local oxygen evolution. S. Oxygen isotope from labelled water appears in the evolved gas.
ⓐ. P → Q → R → S
ⓑ. Q → P → S → R
ⓒ. P → R → Q → S
ⓓ. S → R → Q → P
416. Four thylakoid preparations are illuminated to establish a proton gradient and then transferred suddenly to darkness.
TreatmentGradient after darknessBrief ATP formation after darkness
PCollapses rapidlyPresent
QPersists stronglyAbsent
RCollapses rapidlyAbsent
SWas very low even during illuminationAbsent
Which treatment most specifically indicates that the \(CF_0\) proton channel is blocked while the membrane remains otherwise intact?
ⓐ. Treatment P
ⓑ. Treatment R
ⓒ. Treatment S
ⓓ. Treatment Q
417. Eighteen RuBP molecules react with RuBisCO. Twelve undergo carboxylation and six undergo oxygenation. Count all immediate products, but calculate energy only for the standard Calvin-cycle processing of the twelve fixed carbon-dioxide molecules; exclude photorespiratory costs. Which account is correct?
ⓐ. \(24\) PGA, \(6\) phosphoglycolate, \(18\) ATP and \(12\) NADPH
ⓑ. \(30\) PGA, \(12\) phosphoglycolate, \(36\) ATP and \(24\) NADPH
ⓒ. \(30\) PGA, \(6\) phosphoglycolate, \(36\) ATP and \(24\) NADPH
ⓓ. \(36\) PGA, \(6\) phosphoglycolate, \(54\) ATP and \(36\) NADPH
418. Photosynthesising algae receive a brief pulse of \(\mathrm{^{14}CO_2}\), after which unlabelled carbon dioxide is supplied. Label appears first in PGA, later in triose phosphate and eventually in RuBP, while the total RuBP concentration remains approximately constant. Which inference is strongest?
ⓐ. Reduced intermediates help regenerate the carbon-dioxide acceptor
ⓑ. PGA is converted directly into oxygen before RuBP forms
ⓒ. RuBP is a terminal carbohydrate product removed from the cycle
ⓓ. The isotope enters RuBP without passing through reduction reactions
419. Plasmodesmatal connections between C4 mesophyll and bundle-sheath cells are selectively sealed, while PEP carboxylase, decarboxylating enzymes, RuBisCO and the Calvin cycle remain functional within their original cells. Which pattern is expected?
ⓐ. Four-carbon acids move inward normally, but only oxygen fails to leave the bundle sheath
ⓑ. Bundle-sheath RuBisCO relocates to mesophyll cells and restores the pathway
ⓒ. C4 acids accumulate, three-carbon return fails and PEP regeneration declines
ⓓ. OAA is converted directly into glucose without intercellular transport
420. Net photosynthetic rate is plotted against external carbon-dioxide concentration for a C3 plant and a C4 plant at \(20^\circ\mathrm{C}\) and \(35^\circ\mathrm{C}\). At \(35^\circ\mathrm{C}\) and ordinary carbon dioxide, the C4 curve lies far above the C3 curve. Carbon-dioxide enrichment raises the C3 curve strongly and narrows the gap, while the C4 curve changes comparatively little. At \(20^\circ\mathrm{C}\), the initial gap is smaller. Which explanation best integrates the curves?
ⓐ. Carbon-dioxide enrichment converts C3 plants into anatomical C4 plants at high temperature
ⓑ. C4 plants lack RuBisCO and cannot respond to external carbon dioxide
ⓒ. Temperature affects only light absorption and not RuBisCO activity
ⓓ. Heat raises C3 photorespiration; enrichment favours carboxylation; C4 changes less
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