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Q.Describe the structure and functions of Ecosystem. OR Describe the regulation of gene expression in bacterial cell.

Assam AhsecAHSEC Higher Secondary (HS) Final Examination 2022Subjective· 5mImportance★★★★★
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Ecosystem structure = abiotic + biotic components; its functions = productivity, decomposition, energy flow (10% law) and nutrient cycling. Alternatively, the lac operon model explains inducible, negatively-regulated gene expression in bacteria.

Option 1 — Structure and functions of an ecosystem:

Structure — an ecosystem has two basic components:

  1. Abiotic components — the non-living physical and chemical factors: climatic factors (temperature, light, humidity, rainfall), and inorganic/organic substances present in soil, air and water (e.g. minerals, CO2, O2, humus).
  2. Biotic components — the living organisms, organized by trophic role:
    • Producers (autotrophs) — green plants/algae/cyanobacteria that fix solar energy via photosynthesis, forming the base of the food chain.
    • Consumers (heterotrophs) — herbivores (primary consumers), carnivores (secondary/tertiary consumers), and omnivores, which depend directly or indirectly on producers.
    • Decomposers (saprotrophs) — bacteria and fungi that break down dead organic matter, releasing nutrients back into the environment. Ecosystems also show stratification — vertical layering of different species occupying different levels (e.g. canopy, understory, ground layer in a forest).

Functions:

  1. Productivity — the rate of production of biomass, expressed as Gross Primary Productivity (GPP, total energy fixed by producers) and Net Primary Productivity (NPP, energy left after respiration, available to consumers).
  2. Decomposition — breakdown of complex organic matter (detritus) into simpler inorganic substances by decomposers, through processes like fragmentation, leaching, catabolism, humification and mineralisation.
  3. Energy flow — energy enters via producers (photosynthesis) and flows unidirectionally through successive trophic levels; at each transfer only about 10% of energy is passed to the next trophic level (the 10% law), the rest being lost mainly as heat/respiration.
  4. Nutrient (biogeochemical) cycling — cyclic movement of nutrients (carbon, nitrogen, phosphorus, etc.) between the biotic community and the abiotic environment, via gaseous cycles (e.g. carbon, nitrogen — reservoir in atmosphere) and sedimentary cycles (e.g. phosphorus, sulphur — reservoir in the earth's crust).

Option 2 — Regulation of gene expression in bacterial cell (the Lac Operon model, proposed by Jacob and Monod):

Gene expression in prokaryotes (such as E. coli) is commonly regulated at the level of transcription, using operon systems. The lac operon is the classic example, controlling the metabolism of lactose: …

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