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Testing the metabolic theory of ecology
Authors:Charles A Price  Joshua S Weitz  Van M Savage  James Stegen  Andrew Clarke  David A Coomes  Peter S Dodds  Rampal S Etienne  Andrew J Kerkhoff  Katherine McCulloh  Karl J Niklas  Han Olff  Nathan G Swenson
Institution:1. School of Plant Biology, University of Western Australia, , Crawley, Perth, 6009 Western Australia;2. School of Biology, Georgia Institute of Technology, , Atlanta, GA, 30332 USA;3. School of Physics, Georgia Institute of Technology, , Atlanta, GA, 30332 USA;4. Department of Biomathematics and Department of Ecology and Evolutionary Biology, David Geffen School of Medicine at UCLA, , Los Angeles, CA, 90095 USA;5. Santa Fe Institute, , Santa Fe, NM, 87501 USA;6. Biological Sciences Division, Pacific Northwest National Laboratory, , Richland, WA, 99352 USA;7. British Antarctic Survey, , Cambridge, CB3 0ET UK;8. Department of Plant Sciences, University of Cambridge, , Cambridge, CB2 3EA UK;9. Department of Mathematics and Statistics, University of Vermont, , Burlington, VT, 05401 USA;10. Centre for Ecological and Evolutionary Studies, University of Groningen, , 9700 CC Groningen, the Netherlands;11. Departments of Biology and Mathematics, Kenyon College, , Gambier, OH, 43022 USA;12. Department of Forest Ecosystems and Society, Oregon State University, , Corvallis, OR, 97331 USA;13. Department of Plant Biology, Cornell University, , Ithaca, NY, 14853 USA;14. Department of Plant Biology, Michigan State University, , East Lansing, Michigan, 48824 USA
Abstract:The metabolic theory of ecology (MTE) predicts the effects of body size and temperature on metabolism through considerations of vascular distribution networks and biochemical kinetics. MTE has also been extended to characterise processes from cellular to global levels. MTE has generated both enthusiasm and controversy across a broad range of research areas. However, most efforts that claim to validate or invalidate MTE have focused on testing predictions. We argue that critical evaluation of MTE also requires strong tests of both its theoretical foundations and simplifying assumptions. To this end, we synthesise available information and find that MTE's original derivations require additional assumptions to obtain the full scope of attendant predictions. Moreover, although some of MTE's simplifying assumptions are well supported by data, others are inconsistent with empirical tests and even more remain untested. Further, although many predictions are empirically supported on average, work remains to explain the often large variability in data. We suggest that greater effort be focused on evaluating MTE's underlying theory and simplifying assumptions to help delineate the scope of MTE, generate new theory and shed light on fundamental aspects of biological form and function.
Keywords:Allometry  fractal  kleiber curve  metabolic theory  metabolism  scaling theory  WBE model
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