Photosynthesis In Higher Plants MCQs With Answers – Part 3 (Class 11 Biology)
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Photosynthesis in Higher Plants MCQs with Answers – Part 3 (Class 11 Biology)

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211. Assertion: OAA is the primary carbon-dioxide acceptor in the C4 pathway. Reason: Initial fixation in mesophyll cells uses \(3\)-carbon PEP and produces \(4\)-carbon OAA.
ⓐ. Both the Assertion and the Reason are true, and the Reason correctly explains the Assertion
ⓑ. Both the Assertion and the Reason are true, but the Reason does not explain the Assertion
ⓒ. The Assertion is true, whereas the Reason is false and cannot explain the Assertion
ⓓ. The Assertion is false, whereas the Reason is true and cannot explain the Assertion
212. Following a very brief pulse of labelled carbon dioxide in a C4 leaf, the earliest substantial label appears in OAA within mesophyll cells, while bundle-sheath Calvin-cycle products become labelled later. The strongest inference is:
ⓐ. RuBisCO performs the initial fixation inside mesophyll cells
ⓑ. mesophyll fixation precedes carbon delivery to bundle-sheath cells
ⓒ. OAA is synthesised only after the Calvin cycle is completed
ⓓ. bundle-sheath RuBisCO fixes carbon dioxide before mesophyll OAA forms
213. Use the cellular arrangement described below. Cell P lies outside the bundle sheath and contains PEP, while Cell Q forms the chloroplast-rich ring around the vascular bundle and contains RuBisCO. The enzyme catalysing the first fixation of inorganic carbon is located in:
ⓐ. Cell Q and is RuBisCO
ⓑ. Cell Q and is PEP carboxylase
ⓒ. Cell P and is PEP carboxylase
ⓓ. Cell P and is RuBisCO
214. A selective inhibitor enters only the mesophyll cells of a C4 leaf and blocks PEP carboxylase. Light reactions and bundle-sheath RuBisCO remain functional. The earliest major effect is:
ⓐ. less OAA formation and four-carbon-acid delivery to the bundle sheath
ⓑ. increased OAA production through bundle-sheath RuBisCO
ⓒ. direct replacement of mesophyll PEP carboxylase by RuBisCO
ⓓ. unchanged bundle-sheath carbon concentration despite reduced acid delivery
215. Examine the following cell-specific proposals.
ProposalCell typeEnzymeImmediate product or role
PMesophyllPEP carboxylaseFormation of OAA
QMesophyllRuBisCOPrimary formation of OAA
RBundle sheathPEP carboxylaseInitial capture of atmospheric carbon dioxide
SBundle sheathATP synthaseCarboxylation of PEP
Which proposal is internally consistent?
ⓐ. Proposal Q
ⓑ. Proposal P
ⓒ. Proposal S
ⓓ. Proposal R
216. Before transfer from mesophyll to bundle-sheath cells, OAA may be converted into another \(4\)-carbon acid such as ______.
ⓐ. RuBP or PGA
ⓑ. PEP or RuBP
ⓒ. PGA or phosphoglycolate
ⓓ. Malate or aspartate
217. Arrange the following events in the early C4 pathway. P. A four-carbon acid moves to a bundle-sheath cell. Q. PEP carboxylase fixes inorganic carbon in a mesophyll cell. R. OAA is formed. S. OAA is converted into a transportable four-carbon acid.
ⓐ. R → Q → P → S
ⓑ. Q → S → R → P
ⓒ. Q → R → S → P
ⓓ. S → P → Q → R
218. When a mutation blocks movement of all four-carbon acids into bundle-sheath cells, a C4 leaf still forms OAA normally in mesophyll cells. Which pattern is most likely?
ⓐ. Carbon dioxide concentration rises normally around bundle-sheath RuBisCO
ⓑ. RuBisCO relocates into mesophyll cells and converts OAA directly into glucose
ⓒ. Four-carbon acids accumulate in mesophyll as bundle-sheath delivery falls
ⓓ. PEP regeneration becomes unnecessary since transport has stopped
219. A transported C4 acid enters a bundle-sheath cell, but its decarboxylation enzyme is inactive. Initial mesophyll fixation and acid transport continue briefly. The most immediate downstream consequence is:
ⓐ. less carbon dioxide and three-carbon compound are released
ⓑ. increased release of carbon dioxide without formation of a three-carbon compound
ⓒ. direct fixation of the intact four-carbon acid by RuBisCO
ⓓ. immediate conversion of bundle-sheath RuBP into PEP
220. Four molecules of a \(4\)-carbon acid are completely decarboxylated in bundle-sheath cells. How many carbon-dioxide molecules and \(3\)-carbon compounds are produced, and how many carbon atoms are represented altogether after decarboxylation?
ⓐ. \(4\) carbon-dioxide molecules, \(2\) three-carbon compounds and \(10\) carbon atoms
ⓑ. \(2\) carbon-dioxide molecules, \(4\) three-carbon compounds and \(14\) carbon atoms
ⓒ. \(4\) carbon-dioxide molecules, \(4\) three-carbon compounds and \(12\) carbon atoms
ⓓ. \(4\) carbon-dioxide molecules, \(4\) three-carbon compounds and \(16\) carbon atoms
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