Class 11 Biology | 100 Biological Classification Questions
GKaim: Measure. Improve. Achieve.

Biological Classification MCQs with Answers – Part 3 (Class 11 Biology)

Timer: Off
Random: Off

211. A mass of protistan cells moves over decaying twigs and leaves while engulfing organic material. The organisms are best identified as:
ⓐ. photosynthetic chrysophytes
ⓑ. ciliated protozoans
ⓒ. chemosynthetic bacteria
ⓓ. saprophytic slime moulds
212. Under suitable environmental conditions, separate slime-mould cells may aggregate and form:
ⓐ. an ascocarp
ⓑ. a spreading plasmodium
ⓒ. a bacterial endospore
ⓓ. a cyanobacterial heterocyst
213. The plasmodium of a slime mould should not be confused with Plasmodium, since the former is:
ⓐ. a feeding plasmodial mass in a slime-mould life cycle
ⓑ. a malarial sporozoan transmitted between animal hosts
ⓒ. a methane-producing prokaryotic colony in a marsh habitat
ⓓ. an ascus containing sexually formed ascospores
214. Arrange the events of a slime-mould response in biological order. P. A spreading plasmodium forms under suitable conditions. Q. Conditions become unfavourable. R. Fruiting bodies bearing spores develop. S. Resistant spores disperse through air currents.
ⓐ. Q → P → S → R
ⓑ. P → R → Q → S
ⓒ. P → Q → R → S
ⓓ. R → P → Q → S
215. A slime-mould structure rises above the substrate and bears small resistant bodies at its tip. The raised structure is functioning as:
ⓐ. a photosynthetic filament bearing vegetative cells
ⓑ. a reproductive body bearing resistant spores
ⓒ. a nitrogen-fixing heterocyst within a filament
ⓓ. a food-conducting gullet lined with cilia
216. The ability of slime-mould spores to survive adverse conditions for several years is most directly related to their:
ⓐ. requirement for continuous environmental moisture
ⓑ. possession of two unequal locomotory flagella
ⓒ. absence of any protective external covering
ⓓ. presence of thick and resistant spore walls
217. Air currents increase around mature slime-mould fruiting bodies without changing spore production. The most direct predicted effect is:
ⓐ. stronger airflow reduces dispersal from the fruiting bodies
ⓑ. airflow triggers immediate return to the feeding plasmodium
ⓒ. increased dispersal of resistant spores by air currents
ⓓ. spore walls become less resistant during transport
218. A mutation prevents a slime mould from forming true walls around its spores, while fruiting bodies still develop normally. The most likely consequence is:
ⓐ. lower spore survival during prolonged adverse periods
ⓑ. thinner spore walls increase long-term resistance
ⓒ. spores retain full resistance despite lacking true walls
ⓓ. wall loss improves survival by preventing dehydration
219. Assertion: Unfavourable conditions promote formation of fruiting bodies in slime moulds. Reason: Fruiting bodies produce resistant spores that can survive adversity and disperse through air.
ⓐ. Both statements are true, and the Reason correctly explains the Assertion
ⓑ. Both statements are true, but the Reason does not explain the Assertion
ⓒ. The Assertion statement is true, whereas the Reason statement is false
ⓓ. The Assertion statement is false, whereas the Reason statement is true
220. Slime moulds are observed under four conditions.
ConditionDominant observation
PSuitable conditions; active spreading mass
QUnfavourable conditions; raised spore-bearing structures
RDry air; resistant spores remain viable
SAir currents; spores move away from the source
The sequence of biological functions represented by P, Q, R and S is:
ⓐ. dispersal → feeding → photosynthesis → fusion
ⓑ. survival → feeding → fusion → dispersal
ⓒ. feeding → nitrogen fixation → survival → ingestion
ⓓ. feeding → spore production → survival → dispersal
Subscribe
Notify of
guest
0 Comments
Scroll to Top