Plant Kingdom MCQs With Answers – Part 7 (Class 11 Biology)
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Plant Kingdom MCQs with Answers – Part 7 (Class 11 Biology)

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611. Three illustrated plant structures are identified as follows. P. A leafy moss plant bearing antheridia. Q. A fern frond bearing sporangia. R. A Pinus branch bearing a female cone. Their generation sequence is:
ⓐ. gametophyte, sporophyte and sporophyte
ⓑ. sporophyte, gametophyte and sporophyte
ⓒ. gametophyte, gametophyte and sporophyte
ⓓ. sporophyte, sporophyte and gametophyte
612. A microscopic photosynthetic organism has no membrane-bound nucleus and possesses a prokaryotic cellular organisation. Although it was once informally called a blue-green alga, current placement should be in:
ⓐ. the green-algal class Chlorophyceae
ⓑ. Monera rather than eukaryotic algae
ⓒ. the red-algal class Rhodophyceae
ⓓ. the non-vascular group Bryophyta
613. Two closely related plants are grown under different light and water conditions. Their leaf size, colour and growth habit become markedly different, but their floral structures remain stable. A system based mainly on vegetative appearance would be unreliable because:
ⓐ. floral structures are absent from environmentally stressed plants
ⓑ. vegetative characters are never genetically influenced
ⓒ. numerical taxonomy cannot include visible characters
ⓓ. environmental effects can mimic vegetative taxonomic differences
614. A taxonomist compares two flowering plants using external morphology, internal anatomy, embryological features and chemical constituents. This approach most closely represents:
ⓐ. a natural classification based on several affinities
ⓑ. an artificial classification using one superficial trait
ⓒ. classification by habitat alone
ⓓ. numerical taxonomy restricted to chromosome counts
615. Plants P and Q look similar because both evolved thick leaves in dry habitats. New anatomical and reproductive evidence shows that P shares a recent common ancestor with Plant R rather than Q. A phylogenetic system should:
ⓐ. keep P and Q together because external resemblance must dominate
ⓑ. place all three in separate kingdoms
ⓒ. place P with R according to common ancestry
ⓓ. ignore reproductive and ancestry evidence
616. A study codes \(250\) observable plant characters as numerical values, gives each character equal importance and analyses the data by computer. The method is:
ⓐ. chemotaxonomy
ⓑ. cytotaxonomy
ⓒ. phylogenetic classification based only on fossils
ⓓ. numerical taxonomy
617. Two morphologically similar plants differ consistently in chromosome number, chromosome structure and meiotic chromosome behaviour. The evidence most directly belongs to:
ⓐ. chemical evidence used in chemotaxonomy
ⓑ. habitat evidence used in ecological grouping
ⓒ. habit-based evidence used in artificial taxonomy
ⓓ. chromosome evidence used in cytotaxonomy
618. Two plant samples have similar leaves and stems, but one contains a characteristic group of chemical constituents absent from the other. Using those compounds to reassess their relationship is an application of:
ⓐ. numerical taxonomy
ⓑ. cytotaxonomy
ⓒ. chemotaxonomy
ⓓ. artificial classification by colour
619. Plants P and Q share a nearly identical growth habit. Chromosome evidence and chemical profiles, however, consistently place P with Plant R. The best conclusion is:
ⓐ. group P with R because independent evidence outweighs habit
ⓑ. P and Q must remain together because habit is always decisive
ⓒ. chromosome and chemical evidence are irrelevant to classification
ⓓ. all three plants must be placed among algae
620. Four plants are grouped together solely because all are shrubs. Later evidence shows different internal anatomy, chromosome patterns and reproductive structures. The strongest taxonomic response is to:
ⓐ. preserve the grouping because growth habit cannot mislead
ⓑ. reassess using anatomy, chromosomes and reproduction
ⓒ. discard all characters except shrub height
ⓓ. classify the plants according to soil moisture only
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