Again 100 Structural Organisation In Animals MCQs | Biology
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Structural Organisation in Animals MCQs with Answers – Part 3 (Class 11 Biology)

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211. External nephridiopores are blocked without affecting nephridia that discharge into the intestine. The most direct consequence is:
ⓐ. loss of blood-cell production in segments \(4\text{–}6\)
ⓑ. failure of cutaneous oxygen diffusion across the skin
ⓒ. impaired external discharge by integumentary nephridia
ⓓ. complete stoppage of every nephridial route
212. A tracer is introduced into excess coelomic fluid. In control worms it later appears both at the body surface and in the intestine. In treated worms the external nephridiopores are sealed, and the tracer appears only in the intestine. The strongest inference is:
ⓐ. all nephridia normally discharge only through the body surface
ⓑ. nephridia can discharge outside or into the digestive tube
ⓒ. the intestine produces the coelomic tracer independently
ⓓ. nephridiopores are required for entry into septal nephridia
213. Assertion: Earthworm nephridia contribute to osmoregulation as well as excretion. Reason: They help regulate the volume and composition of body fluids while conveying waste-containing fluid toward an outlet.
ⓐ. Assertion is true; Reason is true; explanatory link is valid
ⓑ. Assertion is true; Reason is true; explanatory link is invalid
ⓒ. Assertion is true; Reason is false; explanatory link is invalid
ⓓ. Assertion is false; Reason is true; explanatory link is invalid
214. Review the statements given below about the earthworm nervous system. I. Segmental ganglia occur on a paired ventral nerve cord. II. In segments \(3\) and \(4\), branches pass around the pharynx. III. These branches connect with dorsal cerebral ganglia to form a nerve ring. IV. The main longitudinal nerve cord lies along the dorsal midline above the gut.
ⓐ. I is true; II is false; III is false; IV is true
ⓑ. I is false; II is true; III is true; IV is false
ⓒ. I is true; II is true; III is false; IV is true
ⓓ. I is true; II is true; III is true; IV is false
215. Examine the arrangement described below. A paired longitudinal cord lies below the alimentary canal and bears repeated ganglia. Near segments \(3\) and \(4\), branches rise on both sides of the pharynx and join a dorsal pair of cerebral ganglia. The complete anterior arrangement forms:
ⓐ. a dorsal blood vessel supplying the pharynx
ⓑ. a nephridial ring discharging into the gut
ⓒ. a circular-muscle band surrounding the oesophagus
ⓓ. a nerve ring linking the ventral cord and brain
216. The ventral nerve cord is severed immediately behind the pharyngeal nerve ring, while the cerebral ganglia and anterior receptors remain intact. The most likely outcome is:
ⓐ. posterior segments respond normally through the cerebral ganglia alone
ⓑ. the nerve cord shifts to the dorsal side and restores coordination
ⓒ. anterior sensing may persist while posterior coordination becomes impaired
ⓓ. every sensory receptor is immediately converted into a motor ganglion
217. The arrangement below is described in words. Structure P lies below the alimentary canal and bears repeated ganglia. Near the pharynx, paired branches rise around it and meet Structure Q above the canal. P and Q are, respectively:
ⓐ. ventral nerve cord and cerebral ganglia
ⓑ. dorsal blood vessel and pharyngeal glands
ⓒ. longitudinal muscle and coelomic epithelium
ⓓ. septal nephridia and intestinal caeca
218. Ganglia in several middle segments of an earthworm are selectively inactivated. Sensory input still reaches the anterior nervous region, but the affected segments no longer produce well-coordinated local responses. The strongest inference is:
ⓐ. cerebral ganglia perform every segmental response without the nerve cord
ⓑ. receptor cells are responsible for all muscular coordination
ⓒ. the dorsal blood vessel replaces inactive neural ganglia
ⓓ. segmental ganglia participate in coordinating regional responses
219. Assess the following statements about sensory reception in an earthworm. I. Eyes are absent. II. Light-sensitive receptor cells permit detection of light. III. Anterior chemoreceptors contribute to taste. IV. Sensitivity to ground vibrations requires a specialised external ear.
ⓐ. I and IV only
ⓑ. I, II and III only
ⓒ. II, III and IV only
ⓓ. I, II, III and IV
220. Pair each environmental stimulus with the receptor or response relation most directly involved. Each Column II entry is used once.
Column IColumn II
P. Change in illuminationW. Touch-sensitive receptor cells
Q. Contact with an obstacleX. Anterior chemoreceptors
R. Chemical quality of foodY. Sensitivity to vibrations transmitted through soil
S. Repeated disturbance of the groundZ. Light-sensitive receptor cells
ⓐ. P-W, Q-Z, R-Y, S-X
ⓑ. P-X, Q-Y, R-Z, S-W
ⓒ. P-Y, Q-X, R-W, S-Z
ⓓ. P-Z, Q-W, R-X, S-Y
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