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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311. Consider the following structure-function relations. I. Casparian strips restrict uncontrolled wall-pathway movement at the root endodermis. II. Spongy-mesophyll air spaces promote internal gaseous movement. III. Collenchyma provides flexible support in growing organs. IV. Bulliform-cell flaccidity increases the exposed grass-leaf area during drought.
ⓐ. Only statements I and IV are correct
ⓑ. Only statements II and III are correct
ⓒ. Only statements I, II and III are correct
ⓓ. All four statements I, II, III and IV are correct
312. Use the path described below. Water enters through Structure P, passes across Region Q and reaches Boundary R before entering the vascular region. P is a unicellular epidermal extension, Q is a broad parenchymatous zone and R contains suberised wall bands. Which functional sequence is correct?
ⓐ. Trichome protection → pith storage → stomatal gas exchange
ⓑ. Root-hair absorption → cortical passage → endodermal restriction
ⓒ. Vessel conduction → mesophyll passage → bundle-sheath storage
ⓓ. Trichome secretion → pith passage → cambial secondary growth
313. Two plant sections contain conspicuous intercellular spaces. Section P is from an aquatic petiole and has thin-walled living cells enclosing very large interconnected air cavities. Section Q is from the lower mesophyll of a dorsiventral leaf and has loosely arranged chloroplast-bearing cells connected with stomatal air spaces. Which interpretation is most accurate?
ⓐ. P is collenchyma and Q is palisade parenchyma; both are interpreted as flexible supporting tissues.
ⓑ. P is sclerenchyma and Q is xylem; both spaces are interpreted as water-conducting lumens.
ⓒ. P is a protoxylem lacuna and Q is a bundle sheath; neither is treated as living parenchyma.
ⓓ. P is aerenchyma and Q is spongy parenchyma; both aid gas movement, while P also supports buoyancy.
314. An unknown stem is cut twice. In a true transverse section, complete vascular bundles occur at many distances from the epidermis and each lacks cambium. In an oblique section of the same specimen, some bundles appear elongated, but their scattered distribution and sclerenchymatous sheaths remain evident. Which conclusion is best supported?
ⓐ. The specimen is a dicot root because oblique cutting converts xylem arms into complete bundles.
ⓑ. The specimen is a monocot stem; section angle may alter bundle shape but not its scattered closed pattern.
ⓒ. The specimen is a dicot stem because every oblique section produces an apparent scattered distribution.
ⓓ. The specimen is an isobilateral leaf because all sheathed bundles must belong to parallel veins.
315. A prepared dicot-root section is rotated and its outer edge is accidentally hidden. The observer can still see alternating xylem and phloem patches, peripheral protoxylem within each xylem strand and a small pith. The most reliable conclusion is:
ⓐ. the section must be discarded because orientation is impossible without the epiblema
ⓑ. the internal vascular relations still support identification as a dicot root
ⓒ. the section should be identified as a monocot stem from the numerous patches
ⓓ. rotation converts the exarch pattern into an endarch pattern
316. A practical identification key uses the following first division: P. Xylem and phloem occur as separate alternating patches. Q. Xylem and phloem occur together in complete bundles. Which relationship is correct?
ⓐ. P leads directly to leaf identity, while Q always leads to root identity.
ⓑ. P distinguishes dicot roots only, while Q distinguishes monocot roots only.
ⓒ. P supports root identity; Q requires further stem-versus-leaf comparison.
ⓓ. P and Q distinguish open bundles from closed bundles.
317. A student examining an unknown transverse section records only three observations: numerous complete vascular bundles, cambium absent from each bundle and a sclerenchymatous sheath around every bundle. Bundle distribution was not recorded. Which conclusion is strongest?
ⓐ. the observations alone establish a monocot stem with certainty
ⓑ. the observations alone establish a dicot root with certainty
ⓒ. the observations alone establish a dorsiventral leaf with certainty
ⓓ. the evidence suggests a monocot stem, pending a wider section
318. Assertion: A reliable practical identification of a root or stem section should use several independent anatomical characters. Reason: A single feature such as large pith, cambium absence or bundle abundance may support a diagnosis but can be insufficient without vascular geometry and tissue arrangement.
ⓐ. 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
319. A mounted grass-leaf section has lost one epidermal surface during preparation. The remaining surface bears groups of large colourless cells, and xylem in each vascular bundle faces that surface. Mesophyll is undifferentiated. The strongest conclusion is:
ⓐ. The remaining surface is abaxial, and the leaf is dorsiventral.
ⓑ. The surface is adaxial, and the section is an isobilateral grass leaf.
ⓒ. The remaining surface is the lower side of a monocot stem.
ⓓ. Surface orientation cannot be inferred after either epidermis is lost.
320. A technician has labelled two surfaces of a dorsiventral-leaf section.
LabelObservation beneath or beside the labelled surface
P: AbaxialPalisade parenchyma lies beneath it, and xylem faces it.
Q: AdaxialMore stomata occur here, spongy air spaces are adjacent, and phloem faces it.
Which correction is required?
ⓐ. Only P is correct; Q should be labelled vascular.
ⓑ. Only Q is correct; P should be labelled mesophyll.
ⓒ. Both labels are correct because surface names depend on slide orientation.
ⓓ. The labels P and Q have been assigned to opposite surfaces.
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