Skip to search boxSkip to navigationSkip to main content

Spatial patterns of above-ground structure, biomass and composition in a network of six Andean elevation transects

  • Cécile A.J. Girardin
    ,
  • William Farfan-Rios
    ,
  • Karina Garcia
    ,
  • Keneth J. Feeley
    ,
  • Peter M. Jørgensen
    ,
  • Alejandro Araujo Murakami
  • University of Oxford
    ,
  • Wake Forest University
    ,
  • Florida International University
    ,
  • Missouri Botanical Garden
    ,
  • Museo de Historia Natural Noel Kempff Mercado
    ,
  • Herbario Nacional de Bolivia
Research Output:
Contribution to journal
Article
Peer-review

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 161-171 (11 pages)

Journal (Volume, Issue Number)

Plant Ecology and Diversity (Volume 7, Issue 1-2)

Publication milestones

  • Published - 2014

Publication status

Published - 2014

ISSN

1755-0874

Publication IDs

  • Scopus: 84893321715

Abstract

Background: The Amazon to Andes transition zone provides large expanses of relatively pristine forest wilderness across environmental gradients. Such elevational gradients are an excellent natural laboratory for establishing long-term interactions between forest ecosystems and environmental parameters, which is valuable for understanding ecosystem responses to environmental change. Aims: This study presents data on elevational trends of forest structure (biomass, basal area, height, stem density), species richness, and composition from six elevational transects in the Andes. Methods: We analysed the spatial patterns of forest structure, above-ground biomass and composition from 76 permanent plots, ranging from lowland Amazonian rain forest to high-elevation cloud forests in Ecuador, Peru, and Bolivia. Results: Forest above-ground woody biomass stocks ranged from 247 Mg ha-1 (Peru, 210 m) to 86 Mg ha-1 (Peru, 3450 m), with significantly decreasing trends of tree height and biomass and an increasing trend of stem density with increasing elevation. We observed an increase in forest richness at three taxonomic levels at mid-elevation, followed by a decrease in richness within the cloud immersion zone. Conclusions: The transects show an increase in stem density, a decline in tree height and above-ground coarse wood biomass and a hump-shaped trend in species richness with increasing elevation. These results suggest that environmental change could lead to significant shifts in the properties of these ecosystems over time.

Funding Details

FundersFunding numbers
FP7
291585
NERC
NE/D011191/1, NE/D014174/1, NE/G006385/1, NE/D01185X/1

Publication metrics

Metrics

Scopus
Citations

PlumX, opens in new tab

Captures
232
Mentions
1
Citations
101