Structural Organisation In Animals MCQs With Answers – Part 4 (Class 11 Biology)
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Structural Organisation in Animals MCQs with Answers – Part 4 (Class 11 Biology)

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301. Lateral ostia in the chambers of the cockroach heart are prevented from opening, while the muscular wall continues contracting rhythmically. The most direct consequence is:
ⓐ. immediate increase in haemolymph entry into every chamber
ⓑ. reduced filling of heart chambers from surrounding haemolymph
ⓒ. conversion of the dorsal heart into a ventral nerve cord
ⓓ. uninterrupted normal flow since ostia have no circulatory role
302. A tracer is placed in haemolymph near the posterior abdomen. With normal heart activity, its concentration first rises in successive heart chambers and then appears toward the anterior end. When heart contractions are stopped, anterior appearance is greatly delayed. The result indicates that the dorsal heart:
ⓐ. pumps haemolymph mainly toward the posterior end
ⓑ. performs gaseous exchange directly with tissues
ⓒ. produces haemocytes within each chamber
ⓓ. promotes anterior movement of haemolymph
303. Read the arrangement described below. Structure P is an elongated muscular tube lying dorsally through the thorax and abdomen. It is divided into funnel-shaped chambers, each receiving haemolymph through lateral openings. Structure P is:
ⓐ. the tracheal trunk carrying air from spiracles
ⓑ. the dorsal heart pumping haemolymph anteriorly
ⓒ. the alimentary canal moving food posteriorly
ⓓ. the ventral nerve cord coordinating segmental responses
304. Associate each respiratory structure of a cockroach with its principal relation. Each Column II entry is used once.
Column IColumn II
P. SpiracleW. Fine terminal branch where diffusion occurs near tissues
Q. TracheaX. Lateral external opening regulated by a sphincter
R. TracheoleY. Air-conducting tube that branches repeatedly
S. Spiracular sphincterZ. Muscular control of opening and closing
ⓐ. P-X, Q-Y, R-W, S-Z
ⓑ. P-Y, Q-X, R-Z, S-W
ⓒ. P-W, Q-Z, R-X, S-Y
ⓓ. P-Z, Q-W, R-Y, S-X
305. Assess the following statements about cockroach respiration. I. Ten pairs of spiracles occur along the lateral sides of the body. II. Spiracles open into tracheae that branch into finer tracheoles. III. Gas exchange occurs mainly between haemolymph and tissues through capillaries. IV. Tracheoles deliver air close to cells, where diffusion occurs.
ⓐ. I and III only
ⓑ. II and III only
ⓒ. I, II and III only
ⓓ. I, II and IV only
306. Every spiracular sphincter of a cockroach becomes unable to relax, while the tracheae and tracheoles remain structurally open. The earliest expected problem is:
ⓐ. reduced movement of food from the oesophagus into the crop
ⓑ. less airflow between the environment and tracheal system
ⓒ. conversion of haemolymph into an oxygen-carrying fluid
ⓓ. increased uric acid discharge through the hindgut
307. Sequence the pathway followed by oxygen from the environment to a cockroach body cell. P. Oxygen enters a fine tracheole. Q. Oxygen passes through a lateral spiracle. R. Oxygen diffuses from the tracheole to the nearby cell. S. Oxygen travels through a larger tracheal tube.
ⓐ. \(S \rightarrow Q \rightarrow P \rightarrow R\)
ⓑ. \(Q \rightarrow P \rightarrow S \rightarrow R\)
ⓒ. \(Q \rightarrow S \rightarrow P \rightarrow R\)
ⓓ. \(P \rightarrow Q \rightarrow R \rightarrow S\)
308. Equal cockroaches are kept at the same temperature and atmospheric oxygen level. In Group P, eight pairs of spiracles are sealed, while Group Q retains all ten pairs. P shows a major decline in oxygen uptake despite normal heart activity. The strongest inference is:
ⓐ. the dorsal heart is the only route by which oxygen reaches tissues
ⓑ. haemolymph fully replaces the blocked tracheal pathway
ⓒ. Malpighian tubules normally draw oxygen through the hindgut
ⓓ. functional spiracular openings are required for normal air entry
309. A cockroach eliminates most nitrogenous waste in the form of uric acid. It is therefore described as:
ⓐ. ammonotelic
ⓑ. uricotelic
ⓒ. ureotelic
ⓓ. aminotelic
310. Relate each excretory component with its most appropriate relation. Each Column II entry is used once.
Column IColumn II
P. Malpighian tubulesW. Receives excretory material before final elimination
Q. HaemolymphX. Main tubules removing nitrogenous waste
R. HindgutY. Fluid from which wastes are absorbed
S. Fat body, nephrocytes, and uricose glandsZ. Additional structures assisting excretion
ⓐ. P-X, Q-Y, R-W, S-Z
ⓑ. P-Y, Q-X, R-Z, S-W
ⓒ. P-W, Q-Z, R-X, S-Y
ⓓ. P-Z, Q-W, R-Y, S-X
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