The Problem of Pattern and Scale in Ecology: The Robert H. MacArthur Award Lecture

Проблема паттернов и масштабов в экологии: лекция лауреата премии Роберта Х. Макартура
Simon A. Levin
1992-12-01

ecological scalingemergent ecological patternsglobal climate changepattern and scalespatial and temporal variability
It is argued that the problem of pattern and scale is the central problem in ecology, unifying population biology and ecosystems science, and marrying basic and applied ecology. Applied challenges, such as the prediction of the ecological causes and consequences of global climate change, require the interfacing of phenomena that occur on very different scales of space, time, and ecological organization. Furthermore, there is no single natural scale at which ecological phenomena should be studied; systems generally show characteristic variability on a range of spatial, temporal, and organizational scales. The observer imposes a perceptual bias, a filter through which the system is viewed. This has fundamental evolutionary significance, since every organism is an "observer" of the environment, and life history adaptations such as dispersal and dormancy alter the perceptual scales of the species, and the observed variability. It likewise has fundamental significance for our own study of ecological systems, since the patterns that are unique to any range of scales will have unique causes and biological consequences. The key to prediction and understanding lies in the elucidation of mechanisms underlying observed patterns. Typically, these mechanisms operate at different scales than those on which the patterns are observed; in some cases, the patterns must be understood as emerging form the collective behaviors of large ensembles of smaller scale units. In other cases, the pattern is imposed by larger scale constraints. Examination of such phenomena requires the study of how pattern and variability change with the scale of description, and the development of laws for simplification, aggregation, and scaling. Examples are given from the marine and terrestrial literatures.
1
Ecological systems lack a single natural scale of analysis and instead exhibit characteristic variability across multiple scales.
2
Ecological understanding and prediction require identifying mechanisms across scales, including patterns emerging from small-unit collective behavior and patterns imposed by larger-scale constraints, supported by scaling and aggregation laws.
3
Observers impose perceptual filters, while organismal adaptations such as dispersal and dormancy modify species’ effective perceptual scales and observed environmental variability.
4
Pattern and scale are presented as ecology’s central unifying problem, linking population biology, ecosystem science, and applied ecology.
5
Predicting global climate-change causes and consequences requires integrating ecological phenomena across widely different spatial, temporal, and organizational scales.

Ecological systems (populations and ecosystems) as observed across multiple spatial, temporal, and organizational scales

How ecological patterns and variability depend on scale, including the mechanisms generating or constraining them and their implications for prediction and understanding

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1992-12-01
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Simon A. Levin
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