Nutrient-cycling mechanisms other than the direct absorption from soil may control forest structure and dynamics in poor Amazonian soils

Author

Grau Fernández, Oriol

Peñuelas, Josep

Ferry, Bruno

Freycon, Vicent

Blanc, Lilian

Desprez, Mathilde

Baraloto, Christopher

Chave, Jerome

Descroix, Laurent

Dourdain, Aurélie

Guitet, Stéphane

Janssens, Ivan

Sardans i Galobart, Jordi

Hérault, Bruno

Publication date

2017

Abstract

Tropical forests store large amounts of biomass despite they generally grow in nutrient-poor soils, suggesting that the role of soil characteristics in the structure and dynamics of tropical forests is complex. We used data for > 34 000 trees from several permanent plots in French Guiana to investigate if soil characteristics could predict the structure (tree diameter, density and aboveground biomass), and dynamics (growth, mortality, aboveground wood productivity) of nutrient-poor tropical forests. Most variables did not covary with site-level changes in soil nutrient content, indicating that nutrient-cycling mechanisms other than the direct absorption from soil (e.g. the nutrient uptake from litter, the resorption, or the storage of nutrients in the biomass), may strongly control forest structure and dynamics. Ecosystem-level adaptations to low soil nutrient availability and long-term low levels of disturbance may help to account for the lower productivity and higher accumulation of biomass in nutrient-poor forests compared to nutrient-richer forests.

Document Type

Article

Language

English

Subjects and keywords

Ecology; Plant sciences

Publisher

 

Related items

European Commission 610028

Ministerio de Economía y Competitividad CGL2013-48074

Ministerio de Ciencia e Innovación CSD2008-00040

Agència de Gestió d'Ajuts Universitaris i de Recerca 2014/SGR-274

Scientific reports ; Vol. 7, art. 45017 (2017)

Rights

open access

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