Anatomy Of Flowering Plants MCQs With Answers – Part 4 (Class 11 Biology)
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Anatomy of Flowering Plants MCQs with Answers – Part 4 (Class 11 Biology)

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301. Three mature primary sections are examined. Specimen P has alternating xylem and phloem patches with peripheral protoxylem. Specimen Q has ringed conjoint bundles with protoxylem toward the pith. Specimen R has conjoint bundles in which xylem faces a palisade-bearing surface and phloem faces a stomata-rich surface. The correct interpretation is:
ⓐ. P is a stem, Q is a root and R is a stem.
ⓑ. P is a leaf, Q is a root and R is a monocot stem.
ⓒ. P is a root, Q a stem and R a dorsiventral leaf.
ⓓ. P is a root, Q is a leaf and R is a monocot root.
302. Assertion: Radial vascular organisation and exarch xylem together strongly support root identity. Reason: In a typical primary root, xylem and phloem occupy alternate radii and protoxylem lies toward the periphery.
ⓐ. Both Assertion and Reason are true, and Reason is the correct explanation of Assertion
ⓑ. Both Assertion and Reason are true, but Reason is not the correct explanation of Assertion
ⓒ. Assertion is true and Reason is false; the false Reason cannot explain the Assertion
ⓓ. Assertion is false and Reason is true; the true Reason cannot explain a false Assertion
303. A treatment prevents protoxylem elements from being recognised by size or wall pattern in an unknown section, but the positions of xylem and phloem remain clearly visible. The observer can still determine that the arrangement is radial, yet cannot decide whether it is exarch or endarch. This result shows that:
ⓐ. xylem-phloem geometry can be classified independently of protoxylem position
ⓑ. radial identity and maturation orientation require exactly the same evidence
ⓒ. exarch identity is determined solely by phloem position
ⓓ. loss of protoxylem evidence converts a root into a stem
304. Four unknown primary sections are described.
SectionDiagnostic observations
P\(3\) xylem groups, small pith, radial exarch organisation
Q\(9\) xylem groups, large pith, radial exarch organisation
RRinged open bundles, differentiated cortex and central pith
SScattered closed bundles, undifferentiated ground tissue and protoxylem lacunae
Which identification is correct?
ⓐ. P-monocot root, Q-dicot root, R-monocot stem, S-dicot stem
ⓑ. P-dicot stem, Q-monocot stem, R-dicot root, S-monocot root
ⓒ. P-dicot root, Q-monocot root, R-monocot stem, S-dicot stem
ⓓ. P-dicot root, Q-monocot root, R-dicot stem, S-monocot stem
305. An otherwise typical dicot-stem section loses visible starch grains from its endodermis, but still has a collenchymatous hypodermis, differentiated cortex, sclerenchymatous pericycle, medullary rays and ringed open bundles. The strongest conclusion is:
ⓐ. the section must be a monocot stem because the starch sheath is absent
ⓑ. the organ has become a root with radial vascular tissues
ⓒ. the remaining features still support a dicot-stem identity
ⓓ. the section cannot be classified from any anatomical evidence
306. A transverse section contains \(5\) complete vascular bundles in each of \(8\) equal sectors of the ground tissue. The bundles are scattered, closed and surrounded by sclerenchymatous sheaths. The total bundle count and most likely identity are:
ⓐ. \(40\) bundles; a monocot stem
ⓑ. \(13\) bundles; a dicot stem
ⓒ. \(40\) xylem arms; a monocot root
ⓓ. \(64\) bundles; a dicot root
307. A graph plots vascular-bundle number per equal area against distance inward from the epidermis. Specimen P shows bundles only within a narrow peak corresponding to one ring. Specimen Q shows bundles across most distances, with no single ring-shaped peak. Which interpretation is best supported?
ⓐ. P is a radial root and Q is a dorsiventral leaf.
ⓑ. P is consistent with a dicot stem and Q with a monocot stem.
ⓒ. P and Q are identical stems viewed at different magnifications.
ⓓ. P is a monocot stem, while Q is a dicot stem.
308. An unknown section has an epiblema, broad cortex, endodermis, pericycle, radial exarch vascular tissues, \(8\) xylem groups and a large pith. The most appropriate completion is: the specimen is a ______.
ⓐ. typical dicot stem
ⓑ. typical monocot stem
ⓒ. typical monocot root
ⓓ. typical dorsiventral leaf
309. Match each partial anatomical record with the strongest conclusion that can be drawn from it. A Column II entry is used once.
Column IColumn II
P. Xylem and phloem lie on alternate radii, but protoxylem position is not visible1. Dicot stem pattern
Q. Conjoint bundles form a ring, cambium lies between phloem and xylem, and protoxylem faces the pith2. Isobilateral leaf pattern
R. Mesophyll is undifferentiated, stomata occur on both surfaces, and bulliform cells occur adaxially3. Root identity supported, but xylem maturation unresolved
S. Palisade and spongy tissues occupy opposite sides, and bundle xylem faces the palisade side4. Dorsiventral leaf pattern
ⓐ. P-1, Q-3, R-4, S-2
ⓑ. P-3, Q-2, R-1, S-4
ⓒ. P-2, Q-1, R-4, S-3
ⓓ. P-3, Q-1, R-2, S-4
310. A plant growing in seasonally dry conditions has a thick aerial cuticle, dense shoot trichomes and grass-like leaves that roll inward during water stress. These features function together mainly by:
ⓐ. reducing surface exposure and water loss through multiple features
ⓑ. replacing xylem as the principal pathway for water transport
ⓒ. increasing uncontrolled evaporation from all aerial surfaces
ⓓ. converting epidermal tissues into secondary vascular tissues
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