Tree Age Distributions Reveal Large-Scale Disturbance-Recovery Cycles in Three Tropical Forests
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Frontiers Media
Abstract
Over the past few decades there has been a growing realization that a large share
of apparently ‘virgin’ or ‘old-growth’ tropical forests carries a legacy of past natural
or anthropogenic disturbances that have a substantial effect on present-day forest
composition, structure and dynamics. Yet, direct evidence of such disturbances is
scarce and comparisons of disturbance dynamics across regions even more so. Here
we present a tree-ring based reconstruction of disturbance histories from three tropical
forest sites in Bolivia, Cameroon, and Thailand. We studied temporal patterns in tree
regeneration of shade-intolerant tree species, because establishment of these trees is
indicative for canopy disturbance. In three large areas (140–300 ha), stem disks and
increment cores were collected for a total of 1154 trees (>5 cm diameter) from 12 tree
species to estimate the age of every tree. Using these age estimates we produced
population age distributions, which were analyzed for evidence of past disturbance.
Our approach allowed us to reconstruct patterns of tree establishment over a period of
around 250 years. In Bolivia, we found continuous regeneration rates of three species
and a peaked age distribution of a long-lived pioneer species. In both Cameroon and
Thailand we found irregular age distributions, indicating strongly reduced regeneration
rates over a period of 10–60 years. Past fires, windthrow events or anthropogenic
disturbances all provide plausible explanations for the reported variation in tree age
across the three sites. Our results support the recent idea that the long-term dynamics
of tropical forests are impacted by large-scale disturbance-recovery cycles, similar to
those driving temperate forest dynamics.
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Bibliographic citation
Vlam, M., van der Sleen, P., Groenendijk, P., & Zuidema, P. A. (2017). Tree Age Distributions Reveal Large-Scale Disturbance-Recovery Cycles in Three Tropical Forests. Frontiers in plant science, 7, 1984
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https://doi.org/10.3389/fpls.2016.01984Sponsors
This study was financially supported by the European Research Council (ERC, grant #242955). The paper is derived from the work done in partial fulfillment of the requirements for a PhD degree of the first author (MV) at Wageningen University (Vlam, 2014)
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© 2017 Vlam, van der Sleen, Groenendijk and Zuidema.Thisisanopen- access article distributed under the terms of the Creative Commons Attribution License (CCBY). The use, distribution or reproduction in other forums is permitted, provided the original author(s)or licensor arecredited and that theoriginal publication in this journal is cited, in a ccordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms



