Course review

D4.2 Stability and change

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Learning objective

D4.2.1—Stability of natural ecosystems

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• Some ecosystems remain stable over long timescales despite local fluctuations • Ancient forests, deserts, and long-lived communities provide evidence of stability

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Learning objective

D4.2.2—Requirements for stability

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• Stability requires energy input, nutrient cycling, biodiversity, and genetic diversity • Abiotic conditions must remain within tolerance ranges for key species

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Learning objective

D4.2.3—Amazon rainforest deforestation

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• Amazon deforestation reduces transpiration, rainfall recycling, and regional cooling • Loss of forest can push rainforest toward savanna-like tipping points

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Learning objective

D4.2.4—Mesocosm model

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• Mesocosms model ecosystem stability under controlled experimental conditions • Closed bottle systems restrict matter exchange but allow light energy input

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Learning objective

D4.2.5—Keystone species

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• Keystone species have disproportionate effects on community structure • Removal can trigger trophic cascades and ecosystem instability

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Learning objective

D4.2.6—Sustainable resource harvesting

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• Sustainable harvesting removes biomass at or below replacement rate • Managed plant harvests and marine fish stocks require monitoring population recovery

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Learning objective

D4.2.7—Agriculture sustainability factors

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• Agricultural sustainability depends on soil conservation, nutrient balance, and biodiversity • Erosion, leaching, fertilizers, agrochemicals, irrigation, and carbon footprint are key factors

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Learning objective

D4.2.8—Eutrophication

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• Eutrophication follows nitrate and phosphate enrichment of water • Algal blooms, decomposition, high biochemical oxygen demand, and hypoxia harm aquatic life

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D4.2.9—Biomagnification

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• Biomagnification increases toxin concentration at higher trophic levels • DDT and mercury show how top predators receive the highest doses

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Learning objective

D4.2.10—Plastic pollution of oceans

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• Macroplastics and microplastics persist, fragment, and move through marine ecosystems • Effects include entanglement, ingestion, toxin transport, and food-web impacts

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Learning objective

D4.2.11—Rewilding

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• Rewilding restores natural processes, trophic interactions, and habitat connectivity • Keystone species reintroductions can restart trophic cascades and reduce intensive management

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Learning objective

D4.2.12 (HL)—Ecological succession

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• Ecological succession is community change over time after new habitat or disturbance • Abiotic modification and species interactions drive replacement of pioneer species

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D4.2.13 (HL)—Changes during primary succession

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• Primary succession begins on bare surfaces without soil • Soil depth, biomass, diversity, food-web complexity, and nutrient cycling increase

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D4.2.14 (HL)—Cyclical succession

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• Cyclical succession repeats predictable community changes in the same area • It reflects recurring disturbance or species interactions rather than one fixed endpoint

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D4.2.15 (HL)—Climax communities and arrested succession

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• Climax communities are relatively stable communities shaped by local conditions • Grazing, burning, mowing, or drainage can arrest succession before climax

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