NARA Discovery
Article Details
← Back to Search Results
Journal Article

Does the disturbance hypothesis explain the biomass increase in basin‐wide Amazon forest plot data?

M. GLOOR; O. L. PHILLIPS; J. J. LLOYD; S. L. LEWIS; Y. MALHI; T. R. BAKER; G. LÓPEZ‐GONZALEZ; J. PEACOCK; S. ALMEIDA; A. C. ALVES De OLIVEIRA; E. ALVAREZ; I. AMARAL; L. ARROYO; G. AYMARD; O. BANKI; L. BLANC; D. BONAL; P. BRANDO; K.‐J. CHAO; J. CHAVE; N. DÁVILA; T. ERWIN; J. SILVA; A. Di FIORE; T. R. FELDPAUSCH; A. FREITAS; R. HERRERA; N. HIGUCHI; E. HONORIO; E. JIMÉNEZ; T. KILLEEN; W. LAURANCE; C. MENDOZA; A. MONTEAGUDO; A. ANDRADE; D. NEILL; D. NEPSTAD; P. NÚÑEZ VARGAS; M. C. PEÑUELA; A. PEÑA CRUZ; A. PRIETO; N. PITMAN; C. QUESADA; R. SALOMÃO; MARCOS SILVEIRA; M. SCHWARZ; J. STROPP; F. RAMÍREZ; H. RAMÍREZ; A. RUDAS; H. Ter STEEGE; N. SILVA; A. TORRES; J. TERBORGH; R. VÁSQUEZ; G. Van Der HEIJDEN
Global Change Biology · Vol. 15, Issue 10 · pp. 2418-2430 · 2009

Abstract

Positive aboveground biomass trends have been reported from old‐growth forests across the Amazon basin and hypothesized to reflect a large‐scale response to exterior forcing. The result could, however, be an artefact due to a sampling bias induced by the nature of forest growth dynamics. Here, we characterize statistically the disturbance process in Amazon old‐growth forests as recorded in 135 forest plots of the RAINFOR network up to 2006, and other independent research programmes, and explore the consequences of sampling artefacts using a data‐based stochastic simulator. Over the observed range of annual aboveground biomass losses, standard statistical tests show that the distribution of biomass losses through mortality follow an exponential or near‐identical Weibull probability distribution and not a power law as assumed by others. The simulator was parameterized using both an exponential disturbance probability distribution as well as a mixed exponential–power law distribution to account for potential large‐scale blowdown events. In both cases, sampling biases turn out to be too small to explain the gains detected by the extended RAINFOR plot network. This result lends further support to the notion that currently observed biomass gains for intact forests across the Amazon are actually occurring over large scales at the current time, presumably as a response to climate change.

Bibliographic Information

JournalGlobal Change Biology
PublisherWiley
Publication Date2009-10-01
Publication Year2009
Volume15
Issue10
Pages2418-2430
Document TypeJournal Article
Print ISSN1354-1013
eISSN1365-2486
DOI10.1111/j.1365-2486.2009.01891.x
SubjectConservation Science

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/13652486
Publisher PageOpen Publisher Page
Full-text access depends on NARA's subscribed coverage and institutional access.