Class 11 Biology | Again 100 Questions | Animal Kingdom MCQs
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Animal Kingdom MCQs with Answers – Part 2 (Class 11 Biology)

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101. An attached colonial form produces free-swimming umbrella-shaped individuals by budding. The free-swimming individuals form gametes, and the products of sexual reproduction later develop into attached colonies. This life history is best interpreted as:
ⓐ. fragmentation in a sponge without alternation of body forms
ⓑ. sexual reproduction only in a marine ctenophore
ⓒ. metagenesis in Obelia involving polyp and medusa phases
ⓓ. direct development in a cnidarian lacking a polyp phase
102. Match each cnidarian example with its common name. A Column II entry is used once.
Column IColumn II
P. Physalia1. Portuguese man-of-war
Q. Adamsia2. Sea anemone
R. Pennatula3. Sea-pen
S. Gorgonia4. Sea-fan
ⓐ. P-2, Q-1, R-4, S-3
ⓑ. P-1, Q-2, R-3, S-4
ⓒ. P-4, Q-3, R-1, S-2
ⓓ. P-3, Q-4, R-2, S-1
103. A specimen register identifies Meandrina as brain coral and Physalia as Portuguese man-of-war. Which conclusion is most accurate?
ⓐ. The two common names place the organisms in different phyla
ⓑ. Both organisms must possess the same coral skeleton
ⓒ. Physalia must be classified as a medusa-producing coral
ⓓ. Both are cnidarians, but only Meandrina is a coral
104. Two marine specimens are identified as Physalia and Pleurobrachia. Which diagnostic comparison most securely shows that they belong to different phyla?
ⓐ. Physalia bears cnidocytes, whereas Pleurobrachia bears eight ciliated comb rows
ⓑ. Physalia has a water vascular system, whereas Pleurobrachia has jointed appendages
ⓒ. Physalia has nephridia, whereas Pleurobrachia has Malpighian tubules
ⓓ. Physalia has a notochord, whereas Pleurobrachia has a vertebral column
105. Consider the following statements about ctenophores. I. They are exclusively marine. II. They are radially symmetrical and diploblastic. III. Their organisation is at the organ level. IV. Their organisation is at the tissue level.
ⓐ. I, II and IV only
ⓑ. I and III only
ⓒ. II, III and IV only
ⓓ. I, II, III and IV
106. An exclusively marine animal is radially symmetrical, diploblastic and organised at the tissue level. It lacks cnidocytes but bears \(8\) external rows of ciliated plates and can emit light. The animal is most consistently placed in:
ⓐ. Porifera
ⓑ. Cnidaria
ⓒ. Platyhelminthes
ⓓ. Ctenophora
107. A marine animal has \(8\) longitudinal rows of closely arranged ciliated plates on its outer surface. Coordinated beating occurs along these rows. Their most direct function is:
ⓐ. intracellular digestion of suspended food
ⓑ. discharge of stinging capsules during defence
ⓒ. locomotion through coordinated ciliary activity
ⓓ. osmoregulation through removal of excess water
108. Three ctenophore groups are kept under identical conditions while the number of comb rows beating normally is varied.
GroupActive comb rowsDistance moved in \(1\,\text{min}\)Light output
P\(8\)\(24\,\text{cm}\)Normal
Q\(6\)\(17\,\text{cm}\)Normal
R\(4\)\(9\,\text{cm}\)Normal
Which inference is best supported?
ⓐ. Fewer active rows increase displacement and suppress light production
ⓑ. Comb-row activity determines whether the body is radial or bilateral
ⓒ. Reduced comb-row activity lowers locomotory displacement without abolishing bioluminescence
ⓓ. Bioluminescence supplies the propulsive force when comb rows stop beating
109. Two groups of ctenophores are maintained under identical conditions. In group P, comb plates beat normally. In group Q, comb plates are immobilised, but the animals remain alive and continue emitting light. Group Q moves far less than P. The strongest inference is that:
ⓐ. comb plates are responsible for both digestion and light production
ⓑ. comb plates are locomotory, while bioluminescence is a separate property
ⓒ. bioluminescence supplies the main force for movement through water
ⓓ. immobilisation has converted tissue organisation into cellular organisation
110. A ctenophore retains normal beating of all comb plates, but its ability to emit light is selectively blocked. Which outcome is most likely under otherwise unchanged conditions?
ⓐ. Locomotion stops and intracellular digestion becomes impossible
ⓑ. The animal develops cnidocytes to replace the lost light
ⓒ. Locomotion remains normal, while bioluminescence is reduced
ⓓ. External fertilisation changes immediately to internal fertilisation
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