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

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311. Arrange the steps used to identify an early stable product of carbon fixation with a radioactive-carbon pulse. P. Separate the cellular compounds. Q. Expose photosynthesising cells briefly to \(\mathrm{^{14}CO_2}\). R. Detect which separated compounds contain radioactivity. S. Stop metabolism rapidly at defined times. T. Compare early and later labelling patterns.
ⓐ. P → Q → R → S → T
ⓑ. Q → P → S → T → R
ⓒ. S → Q → P → R → T
ⓓ. Q → S → P → R → T
312. A graph plots photosynthetic rate against light intensity for the same plant at \(15^\circ\mathrm{C}\) and \(30^\circ\mathrm{C}\). The curves nearly overlap at very low light. At high light, the \(30^\circ\mathrm{C}\) curve reaches a much higher plateau. Which interpretation is best supported?
ⓐ. light limits both at low intensity; low temperature sets one plateau
ⓑ. temperature is the sole limiting factor at every light intensity
ⓒ. the two temperatures produce identical enzyme activity at high light
ⓓ. high light removes the need for stromal carbon reactions
313. A graph plots photosynthetic rate against external carbon-dioxide concentration for a well-watered leaf and a drought-stressed leaf. Both receive high light and suitable temperature. The well-watered curve rises strongly, while the drought-stressed curve remains low and responds only weakly to increasing external carbon dioxide. Stomata of the stressed leaf are mostly closed. Which explanation fits the graph?
ⓐ. drought has increased carbon-dioxide diffusion into the leaf
ⓑ. external carbon dioxide has become the source of photosynthetic oxygen
ⓒ. stomatal resistance limits enriched carbon dioxide reaching mesophyll cells
ⓓ. high light has stopped all enzyme-controlled reactions in the stressed leaf
314. Photosynthetic rates are measured under four treatments.
TreatmentLightCarbon dioxideTemperatureRelative rate
PHighHigh\(10^\circ\mathrm{C}\)\(14\)
QHighHigh\(25^\circ\mathrm{C}\)\(46\)
RHighLow\(25^\circ\mathrm{C}\)\(24\)
SLowHigh\(25^\circ\mathrm{C}\)\(18\)
Which comparison most directly isolates the effect of temperature?
ⓐ. P and R
ⓑ. Q and S
ⓒ. R and S
ⓓ. P and Q
315. Under high light and abundant carbon dioxide, a photosynthetic-rate curve reaches a low plateau at \(10^\circ\mathrm{C}\). When temperature is raised to \(25^\circ\mathrm{C}\), the plateau shifts upward. Which factor was most directly limiting the original plateau?
ⓐ. wavelength quality of the light
ⓑ. temperature-dependent biochemical capacity
ⓒ. atmospheric oxygen as the only carbon source
ⓓ. duration of chlorophyll extraction
316. Consider the following statements about interpreting photosynthetic response graphs. I. A plateau after increasing light means that another factor may be limiting. II. A decline at extremely high light can indicate photoinhibition rather than ordinary saturation. III. One temperature optimum must apply universally to all plant species. IV. External carbon-dioxide enrichment may produce little response when light remains very low. Which combination is valid?
ⓐ. Statements I and III are correct; statements II and IV are incorrect
ⓑ. Statements II and III are correct; statements I and IV are incorrect
ⓒ. Statements I, II and IV are correct; statement III is incorrect
ⓓ. Statements I, II, III and IV are all correct
317. Non-cyclic electron flow must supply \(12\) NADPH molecules. Assume each NADPH requires \(2\) electrons and all electrons originate from photolysis according to \(\mathrm{2H_2O\rightarrow4H^++O_2+4e^-}\). How many water molecules are split and oxygen molecules released?
ⓐ. \(12\) water molecules and \(6\) oxygen molecules
ⓑ. \(6\) water molecules and \(3\) oxygen molecules
ⓒ. \(24\) water molecules and \(12\) oxygen molecules
ⓓ. \(12\) water molecules and \(12\) oxygen molecules
318. Fixation of \(10\) carbon-dioxide molecules requires \(30\) ATP and \(20\) NADPH. Non-cyclic electron flow supplies exactly \(20\) ATP and \(20\) NADPH. How much additional ATP must cyclic photophosphorylation provide?
ⓐ. \(5\) ATP
ⓑ. \(20\) ATP
ⓒ. \(30\) ATP
ⓓ. \(10\) ATP
319. Six external carbon-dioxide molecules are initially fixed by six PEP molecules in mesophyll cells. Each four-carbon product is later decarboxylated in bundle-sheath cells. Ignoring intermediate names not required here, which symbolic summary correctly represents the carbon flow?
ⓐ. \(\mathrm{6PEP+6CO_2\rightarrow3}\) four-carbon acids \(\rightarrow\mathrm{3CO_2+6}\) three-carbon compounds
ⓑ. \(\mathrm{6PEP+3CO_2\rightarrow6}\) four-carbon acids \(\rightarrow\mathrm{3CO_2+3}\) three-carbon compounds
ⓒ. \(\mathrm{6PEP+6CO_2\rightarrow6}\) four-carbon acids \(\rightarrow\mathrm{6CO_2+6}\) three-carbon compounds
ⓓ. \(\mathrm{6PEP+6O_2\rightarrow6}\) four-carbon acids \(\rightarrow\mathrm{6O_2+6}\) three-carbon compounds
320. Carbon dioxide in a greenhouse is increased from \(0.03\%\) to \(0.05\%\). What is the percentage increase relative to the initial concentration, and what is the correct biological qualifier?
ⓐ. Approximately \(66.7\%\); enrichment may help when other factors are suitable
ⓑ. Approximately \(40\%\); the enrichment guarantees unlimited photosynthesis under all conditions
ⓒ. Approximately \(20\%\); the enrichment can replace the need for light
ⓓ. Approximately \(166.7\%\); the enrichment prevents every form of respiration
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