TOWARD A METABOLIC THEORY OF ECOLOGY
К ПОСТРОЕНИЮ МЕТАБОЛИЧЕСКОЙ ТЕОРИИ ЭКОЛОГИИ
2004-07-01
SCID: 54.1/8gmcjnh9
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body size scalingecological processesmetabolic ratemetabolic theory of ecologytemperature dependence
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Abstract (AI)
Metabolism provides a basis for using first principles of physics, chemistry, and biology to link the biology of individual organisms to the ecology of populations, communities, and ecosystems. Metabolic rate, the rate at which organisms take up, transform, and expend energy and materials, is the most fundamental biological rate. We have developed a quantitative theory for how metabolic rate varies with body size and temperature. Metabolic theory predicts how metabolic rate, by setting the rates of resource uptake from the environment and resource allocation to survival, growth, and reproduction, controls ecological processes at all levels of organization from individuals to the biosphere. Examples include: (1) life history attributes, including development rate, mortality rate, age at maturity, life span, and population growth rate; (2) population interactions, including carrying capacity, rates of competition and predation, and patterns of species diversity; and (3) ecosystem processes, including rates of biomass production and respiration and patterns of trophic dynamics. Data compiled from the ecological literature strongly support the theoretical predictions. Eventually, metabolic theory may provide a conceptual foundation for much of ecology, just as genetic theory provides a foundation for much of evolutionary biology.
Key Findings
1
A quantitative theory was developed predicting how metabolic rate scales with body size and temperature.
2
Metabolic rate (energy/material uptake, transformation, expenditure) is the most fundamental biological rate linking individuals to ecological processes.
3
Metabolic rate governs life-history traits (development rate, mortality, age at maturity, lifespan, population growth) by setting resource uptake and allocation.
4
Metabolic theory predicts ecosystem processes (biomass production and respiration rates, trophic dynamics), and literature data strongly support these predictions.
5
Metabolic theory predicts population- and community-level patterns (carrying capacity, competition and predation rates, species diversity patterns).
Research Object
Metabolic rate as it operates across organisms, populations, communities, and ecosystems
Research Subject
How metabolic rate (and its scaling with body size and temperature) controls ecological processes and patterns (life history traits, population dynamics, species interactions, ecosystem production and respiration) across levels of biological organization
Publication Details
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2004-07-01
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