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Comparing tropical forest tree size distributions with the predictions of metabolic ecology and equilibrium models

Authors :
Helene C. Muller-Landau
Renato Valencia
Hua Seng Lee
Martha Isabel Vallejo
Fangliang He
Handanakere Shavaramaiah Dattaraja
Sean C. Thomas
Elizabeth Losos
Sylvester Tan
Leonardo Co
Jean-Remy Makana
Takuo Yamakura
Somboon Kiratiprayoon
Hebbalalu S. Suresh
Abd Rahman Kassim
Gorky Villa Muñoz
Raman Sukumar
Christian O. Marks
Peter S. Ashton
Kyle E. Harms
George B. Chuyong
Robin B. Foster
Shameema Esufali
Richard Condit
Consuelo Hernandez
Savitri Gunatilleke
Stephen P. Hubbell
Tatsuhiro Ohkubo
Sarayudh Bunyavejchewin
David Kenfack
Christopher Wills
Cristián Samper
Pamela Hall
Jess K. Zimmerman
Duncan W. Thomas
Nimal Gunatilleke
M. N. Nur Supardi
Daniel Lagunzad
I-Fang Sun
Stuart J. Davies
Akira Itoh
James V. LaFrankie
Jill Thompson
Terese B. Hart
Source :
Ecology Letters. 9:589-602
Publication Year :
2006
Publisher :
Wiley, 2006.

Abstract

Tropical forests vary substantially in the densities of trees of different sizes and thus in above-ground biomass and carbon stores. However, these tree size distributions show fundamental similarities suggestive of underlying general principles. The theory of metabolic ecology predicts that tree abundances will scale as the -2 power of diameter. Demographic equilibrium theory explains tree abundances in terms of the scaling of growth and mortality. We use demographic equilibrium theory to derive analytic predictions for tree size distributions corresponding to different growth and mortality functions. We test both sets of predictions using data from 14 large-scale tropical forest plots encompassing censuses of 473 ha and > 2 million trees. The data are uniformly inconsistent with the predictions of metabolic ecology. In most forests, size distributions are much closer to the predictions of demographic equilibrium, and thus, intersite variation in size distributions is explained partly by intersite variation in growth and mortality.

Details

ISSN :
14610248 and 1461023X
Volume :
9
Database :
OpenAIRE
Journal :
Ecology Letters
Accession number :
edsair.doi...........313d9dc6b466ecacb5053e7938d744ce
Full Text :
https://doi.org/10.1111/j.1461-0248.2006.00915.x