Patterns in body mass distributions: sifting among alternative hypotheses
Open Access
- 14 March 2006
- journal article
- Published by Wiley in Ecology Letters
- Vol. 9 (5) , 630-643
- https://doi.org/10.1111/j.1461-0248.2006.00902.x
Abstract
Understanding how animals interact with their environment is critical for evaluating, mitigating and coping with anthropogenic alteration of Earth's biosphere. Researchers have attempted to understand some aspects of these interactions by examining patterns in animal body mass distributions. Energetic, phylogenetic, biogeographical, textural discontinuity and community interaction hypotheses have been advanced to explain observed patterns. Energetic and textural discontinuity hypotheses focus upon the allometry of resource use. The community interaction hypothesis contends that biotic interactions within assemblages of species are of primary importance. Biogeographical and phylogenetic hypotheses focus on the role of constraints on the organization of communities. This paper examines and organizes these various propositions about species body mass distributions and discusses the multiple competing hypotheses, how their predictions vary, and possible methods by which the hypotheses can be distinguished and tested. Each of the hypotheses is partial, and explains some elements of pattern in body mass distributions. The scale of appropriate application, relevance and interpretation varies among the hypotheses, and the mechanisms underlying observed patterns are likely to be multicausal and vary with scale.Keywords
This publication has 93 references indexed in Scilit:
- TOWARD A METABOLIC THEORY OF ECOLOGYEcology, 2004
- Latitudinal variation in the shape of the species body size distribution: an analysis using freshwater fishesOecologia, 2004
- The evolution of placental mammal body sizes: evolutionary history, form, and functionOecologia, 2004
- Evolution, Ecology, and Multimodal Distributions of Body SizeEcosystems, 2002
- Constraints on body-size distributions: an experimental test of the habitat architecture hypothesisJournal of Animal Ecology, 2001
- GAPS IN MAMMALIAN BODY SIZE DISTRIBUTIONS REEXAMINEDEcology, 1999
- Body Mass Patterns Predict Invasions and Extinctions in Transforming LandscapesEcosystems, 1999
- Original Articles: Causes of Ecosystem Transformation at the End of the Pleistocene: Evidence from Mammal Body-Mass DistributionsEcosystems, 1998
- Assembly of local communities: consequences of an optimal body size for the organization of competitively structured communitiesBiological Journal of the Linnean Society, 1997
- The Macroecology of Cyprinella: Correlates of Phylogeny, Body Size, and Geographical RangeThe American Naturalist, 1994