Plant Kingdom MCQs With Answers – Part 5 (Class 11 Biology)
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Plant Kingdom MCQs with Answers – Part 5 (Class 11 Biology)

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401. Examine the habit records.
PlantRecorded habit
P. CycasLargely unbranched stem
Q. PinusBranched tree
R. SequoiaVery tall tree
The records demonstrate that gymnosperms:
ⓐ. always possess identical stem architecture
ⓑ. vary considerably in habit and size
ⓒ. are restricted to unbranched shrubs
ⓓ. can be classified by height alone
402. The usual primary root system of a gymnosperm develops as:
ⓐ. a fibrous system lacking a main root
ⓑ. a cluster of non-vascular rhizoids
ⓒ. a holdfast attached to rocky substrata
ⓓ. a persistent primary tap-root system
403. The roots of Pinus commonly form a mutually beneficial association with:
ⓐ. nitrogen-fixing cyanobacterial partners
ⓑ. photosynthetic moss protonemal partners
ⓒ. marine red-algal partners
ⓓ. mycorrhizal fungal partners
404. In a Pinus mycorrhizal association, the fungal partner is especially useful because it:
ⓐ. enhances water and mineral absorption
ⓑ. produces exposed ovules
ⓒ. forms pollen grains for the tree
ⓓ. converts the root into a coralloid root
405. A fungicide selectively destroys the mycorrhizal partner of young Pinus plants without directly damaging root cells. The earliest likely consequence is:
ⓐ. lower water and mineral uptake efficiency
ⓑ. immediate formation of coralloid roots
ⓒ. conversion of needles into broad leaves
ⓓ. development of fruits around the seeds
406. Coralloid roots of Cycas are associated with:
ⓐ. fungal hyphae that form mycorrhiza
ⓑ. mosses that retain water
ⓒ. nitrogen-fixing cyanobacteria
ⓓ. fern prothalli that produce gametes
407. The statement “Cycas root cells directly fix atmospheric \(\mathrm{N_2}\)” is inaccurate because nitrogen fixation is carried out mainly by:
ⓐ. the vascular cambium of the root
ⓑ. cyanobacteria living in coralloid roots
ⓒ. fungal partners forming mycorrhiza
ⓓ. pollen grains lodged on the root surface
408. Match each gymnosperm root relation with its partner or principal contribution. A Column II entry is used once.
Column IColumn II
P. Pinus root1. Fixes atmospheric nitrogen
Q. Cycas coralloid root2. Forms a mycorrhizal association
R. Mycorrhizal fungus3. Houses cyanobacteria
S. Cyanobacterial partner4. Improves water and mineral absorption
ⓐ. P-2, Q-3, R-4, S-1
ⓑ. P-3, Q-2, R-1, S-4
ⓒ. P-4, Q-1, R-2, S-3
ⓓ. P-1, Q-4, R-3, S-2
409. An unknown gymnosperm has swollen, coral-like roots containing photosynthetic prokaryotes. The plant is most likely:
ⓐ. Pinus
ⓑ. Cedrus
ⓒ. Cycas
ⓓ. Sequoia
410. Cyanobacteria are experimentally removed from the coralloid roots of Cycas while the roots remain structurally intact. The function most directly reduced is:
ⓐ. formation of exposed seeds on sporophylls
ⓑ. pollen-tube growth toward the ovule
ⓒ. development of persistent pinnate leaves
ⓓ. cyanobacterial nitrogen-fixation activity
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