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Unraveling the relative role of light and water competition between lianas and trees in tropical forests : a vegetation model analysis

(2021) JOURNAL OF ECOLOGY. 109(1). p.519-540
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  • TREECLIMBERS (Modelling lianas as key drivers of tropical forest responses to climate change)
Abstract
1. Despite their low contribution to forest carbon stocks, lianas (woody vines) play an important role in the carbon dynamics of tropical forests. As structural parasites, they hinder tree survival, growth and fecundity; hence, they negatively impact net ecosystem productivity and long-term carbon sequestration. 2. Competition (for water and light) drives various forest processes and depends on the local abundance of resources over time. However, evaluating the relative role of resource availability on the interactions between lianas and trees from empirical observations is particularly challenging. Previous approaches have used labour-intensive and ecosystem-scale manipulation experiments, which are infeasible in most situations. 3. We propose to circumvent this challenge by evaluating the uncertainty of water and light capture processes of a process-based vegetation model (ED2) including the liana growth form. We further developed the liana plant functional type in ED2 to mechanistically simulate water uptake and transport from roots to leaves, and start the model from prescribed initial conditions. We then used the PEcAn bioinformatics platform to constrain liana parameters and run uncertainty analyses. 4. Baseline runs successfully reproduced ecosystem gas exchange fluxes (gross primary productivity and latent heat) and forest structural features (leaf area index, aboveground biomass) in two sites (Barro Colorado Island, Panama and Paracou, French Guiana) characterized by different rainfall regimes and levels of liana abundance. 5. Model uncertainty analyses revealed that water limitation was the factor driving the competition between trees and lianas at the drier site (BCI), and during the relatively short dry season of the wetter site (Paracou). In young patches, light competition dominated in Paracou but alternated with water competition between the wet and the dry season on BCI according to the model simulations. 6. The modelling workflow also identified key liana traits (photosynthetic quantum efficiency, stomatal regulation parameters, allometric relationships) and processes (water use, respiration, climbing) driving the model uncertainty. They should be considered as priorities for future data acquisition and model development to improve predictions of the carbon dynamics of liana-infested forests. 7. Synthesis: Competition for water plays a larger role in the interaction between lianas and trees than previously hypothesized, as demonstrated by simulations from a process-based vegetation model.
Keywords
Plant Science, Ecology, Ecology, Evolution, Behavior and Systematics, cavelab, competition for resources, dynamic global vegetation model, ecosystem demography model, lianas, PEcAn, plant-plant interactions, uncertainty analysis, BARRO-COLORADO-ISLAND, ECOSYSTEM DEMOGRAPHY MODEL, RAIN-FOREST, CARBON ACCUMULATION, HYDRAULIC TRAITS, AREA INDEX, GROWTH, CANOPY, STEMS, TRANSPORT

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Citation

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MLA
Meunier, Félicien, et al. “Unraveling the Relative Role of Light and Water Competition between Lianas and Trees in Tropical Forests : A Vegetation Model Analysis.” JOURNAL OF ECOLOGY, vol. 109, no. 1, 2021, pp. 519–40, doi:10.1111/1365-2745.13540.
APA
Meunier, F., Verbeeck, H., Cowdery, B., Schnitzer, S. A., Smith‐Martin, C. M., Powers, J. S., … Dietze, M. (2021). Unraveling the relative role of light and water competition between lianas and trees in tropical forests : a vegetation model analysis. JOURNAL OF ECOLOGY, 109(1), 519–540. https://doi.org/10.1111/1365-2745.13540
Chicago author-date
Meunier, Félicien, Hans Verbeeck, Betsy Cowdery, Stefan A. Schnitzer, Chris M. Smith‐Martin, Jennifer S. Powers, Xiangtao Xu, et al. 2021. “Unraveling the Relative Role of Light and Water Competition between Lianas and Trees in Tropical Forests : A Vegetation Model Analysis.” JOURNAL OF ECOLOGY 109 (1): 519–40. https://doi.org/10.1111/1365-2745.13540.
Chicago author-date (all authors)
Meunier, Félicien, Hans Verbeeck, Betsy Cowdery, Stefan A. Schnitzer, Chris M. Smith‐Martin, Jennifer S. Powers, Xiangtao Xu, Martijn Slot, Hannes De Deurwaerder, Matteo Detto, Damien Bonal, Marcos Longo, Louis S. Santiago, and Michael Dietze. 2021. “Unraveling the Relative Role of Light and Water Competition between Lianas and Trees in Tropical Forests : A Vegetation Model Analysis.” JOURNAL OF ECOLOGY 109 (1): 519–540. doi:10.1111/1365-2745.13540.
Vancouver
1.
Meunier F, Verbeeck H, Cowdery B, Schnitzer SA, Smith‐Martin CM, Powers JS, et al. Unraveling the relative role of light and water competition between lianas and trees in tropical forests : a vegetation model analysis. JOURNAL OF ECOLOGY. 2021;109(1):519–40.
IEEE
[1]
F. Meunier et al., “Unraveling the relative role of light and water competition between lianas and trees in tropical forests : a vegetation model analysis,” JOURNAL OF ECOLOGY, vol. 109, no. 1, pp. 519–540, 2021.
@article{8682310,
  abstract     = {{1. Despite their low contribution to forest carbon stocks, lianas (woody vines) play an important role in the carbon dynamics of tropical forests. As structural parasites, they hinder tree survival, growth and fecundity; hence, they negatively impact net ecosystem productivity and long-term carbon sequestration.
2. Competition (for water and light) drives various forest processes and depends on the local abundance of resources over time. However, evaluating the relative role of resource availability on the interactions between lianas and trees from empirical observations is particularly challenging. Previous approaches have used labour-intensive and ecosystem-scale manipulation experiments, which are infeasible in most situations.
3. We propose to circumvent this challenge by evaluating the uncertainty of water and light capture processes of a process-based vegetation model (ED2) including the liana growth form. We further developed the liana plant functional type in ED2 to mechanistically simulate water uptake and transport from roots to leaves, and start the model from prescribed initial conditions. We then used the PEcAn bioinformatics platform to constrain liana parameters and run uncertainty analyses.
4. Baseline runs successfully reproduced ecosystem gas exchange fluxes (gross primary productivity and latent heat) and forest structural features (leaf area index, aboveground biomass) in two sites (Barro Colorado Island, Panama and Paracou, French Guiana) characterized by different rainfall regimes and levels of liana abundance.
5. Model uncertainty analyses revealed that water limitation was the factor driving the competition between trees and lianas at the drier site (BCI), and during the relatively short dry season of the wetter site (Paracou). In young patches, light competition dominated in Paracou but alternated with water competition between the wet and the dry season on BCI according to the model simulations.
6. The modelling workflow also identified key liana traits (photosynthetic quantum efficiency, stomatal regulation parameters, allometric relationships) and processes (water use, respiration, climbing) driving the model uncertainty. They should be considered as priorities for future data acquisition and model development to improve predictions of the carbon dynamics of liana-infested forests.
7. Synthesis: Competition for water plays a larger role in the interaction between lianas and trees than previously hypothesized, as demonstrated by simulations from a process-based vegetation model.}},
  author       = {{Meunier, Félicien and Verbeeck, Hans and Cowdery, Betsy and Schnitzer, Stefan A. and Smith‐Martin, Chris M. and Powers, Jennifer S. and Xu, Xiangtao and Slot, Martijn and De Deurwaerder, Hannes and Detto, Matteo and Bonal, Damien and Longo, Marcos and Santiago, Louis S. and Dietze, Michael}},
  issn         = {{0022-0477}},
  journal      = {{JOURNAL OF ECOLOGY}},
  keywords     = {{Plant Science,Ecology,Ecology,Evolution,Behavior and Systematics,cavelab,competition for resources,dynamic global vegetation model,ecosystem demography model,lianas,PEcAn,plant-plant interactions,uncertainty analysis,BARRO-COLORADO-ISLAND,ECOSYSTEM DEMOGRAPHY MODEL,RAIN-FOREST,CARBON ACCUMULATION,HYDRAULIC TRAITS,AREA INDEX,GROWTH,CANOPY,STEMS,TRANSPORT}},
  language     = {{eng}},
  number       = {{1}},
  pages        = {{519--540}},
  title        = {{Unraveling the relative role of light and water competition between lianas and trees in tropical forests : a vegetation model analysis}},
  url          = {{http://doi.org/10.1111/1365-2745.13540}},
  volume       = {{109}},
  year         = {{2021}},
}

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