Effects of endogenous and exogenous processes on aboveground biomass stocks and dynamics in Andean forests

Miguel A. Peña, Kenneth J. Feeley, Alvaro Duque

Research output: Contribution to journalArticle

6 Scopus citations

Abstract

Tropical forests are paramount in regulating the global carbon cycle due to the storage of large amounts of carbon in their biomass. Using repeat censuses of permanent plots located at 15 sites in the Andes Mountains of northwest Colombia, we evaluate: (1) the relationship between aboveground biomass (AGB) stocks, AGB dynamics (mortality, productivity, and net change), and changes in temperature across a ca. 3000-m elevational gradient (≈ 16.1 °C); (2) how AGB mortality and AGB productivity interact to determine net AGB change; and (3) the extent to which either fine-grain (0.04-ha) or coarse-grain (1-ha) processes determine the AGB dynamics of these forests. We did not find a significant relationship between elevation/temperature and biomass stocks. The net AGB sequestered each year by these forests (2.21 ± 0.51 Mg ha−1 year−1), equivalent to approximately 1.09% of initial AGB, was primarily determined by tree growth. Both forest structural properties and global warming influenced AGB mortality and net change. AGB productivity increases with greater inequality of tree sizes, a pattern characteristic of forest patches recovering from disturbances. Overall, we find that global warming is triggering directional changes in species composition by thermophilization via increased tree mortality of species in the lower portions of their thermal ranges and that the inclusion of small-scale forest structural changes can effectively account for endogenous processes such as changes in forest structure. The inclusion of fine-grain processes in assessments of AGB dynamics could provide additional insights about the effects that ongoing climate change has on the functioning of tropical montane forests.

Original languageEnglish (US)
Pages (from-to)1481-1492
Number of pages12
JournalPlant Ecology
Volume219
Issue number12
DOIs
StatePublished - Dec 1 2018

Keywords

  • Carbon dynamics
  • Carbon stocks
  • Climate change
  • Mountain ecosystems
  • Thermophilization rate

ASJC Scopus subject areas

  • Ecology
  • Plant Science

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