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Q.Study the diagram of a pyramid of biomass given below. Name the two standing crops that could be occupying level 'A' and level 'B' in it. Name this type of pyramid and the ecosystem in which it is found. [Inverted pyramid of biomass: a broad upper level 'A' labelled PC (primary consumers) rests on a narrower lower level 'B' labelled PP (primary producers).]

CBSECBSE Class XII Board 2024Subjective· 2mImportance★★★★★
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An inverted pyramid of biomass occurs in aquatic ecosystems where tiny, fast-reproducing phytoplankton (producers) support a much larger standing biomass of zooplankton (consumers) at any given moment.

The diagram you're looking at captures one of ecology's most counterintuitive patterns: a pyramid that stands on its head. In most terrestrial ecosystems, the biomass pyramid is upright—think of a forest where the mass of trees far exceeds the mass of herbivores, which in turn exceeds the mass of carnivores. But aquatic systems can flip this logic entirely.

Level B, the narrow base labelled PP (primary producers), is occupied by phytoplankton—microscopic algae and photosynthetic bacteria drifting in the water column. These organisms are individually tiny and have extremely short lifespans, often measured in hours or days. At any snapshot in time, their total biomass is surprisingly small.

Level A, the broader upper tier labelled PC (primary consumers), is occupied by zooplankton—tiny animals like copepods, krill larvae, and other microscopic grazers that feed on phytoplankton. These consumers are larger, live longer, and accumulate biomass over weeks or months. The result? At any given moment, the standing crop of zooplankton can actually outweigh the standing crop of phytoplankton.

Note

This doesn't violate energy laws. Phytoplankton reproduce so rapidly that their productivity (biomass produced per unit time) is enormous—they just don't store it. Zooplankton, by contrast, grow more slowly and store biomass in their bodies. …

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