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Published in: Biodiversity and Conservation 3/2017

29-11-2016 | Original Paper

Insights into regional patterns of Amazonian forest structure, diversity, and dominance from three large terra-firme forest dynamics plots

Authors: Alvaro Duque, Helene C. Muller-Landau, Renato Valencia, Dairon Cardenas, Stuart Davies, Alexandre de Oliveira, Álvaro J. Pérez, Hugo Romero-Saltos, Alberto Vicentini

Published in: Biodiversity and Conservation | Issue 3/2017

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Abstract

We analyze forest structure, diversity, and dominance in three large-scale Amazonian forest dynamics plots located in Northwestern (Yasuni and Amacayacu) and central (Manaus) Amazonia, to evaluate their consistency with prevailing wisdom regarding geographic variation and the shape of species abundance distributions, and to assess the robustness of among-site patterns to plot area, minimum tree size, and treatment of morphospecies. We utilized data for 441,088 trees (DBH ≥1 cm) in three 25-ha forest dynamics plots. Manaus had significantly higher biomass and mean wood density than Yasuni and Amacayacu. At the 1-ha scale, species richness averaged 649 for trees ≥1 cm DBH, and was lower in Amacayacu than in Manaus or Yasuni; however, at the 25-ha scale the rankings shifted, with Yasuni < Amacayacu < Manaus. Within each site, Fisher’s alpha initially increased with plot area to 1–10 ha, and then showed divergent patterns at larger areas depending on the site and minimum size. Abundance distributions were better fit by lognormal than by logseries distributions. Results were robust to the treatment of morphospecies. Overall, regional patterns in Amazonian tree species diversity vary with the spatial scale of analysis and the minimum tree size. The minimum area to capture local diversity is 2 ha for trees ≥1 cm DBH, or 10 ha for trees ≥10 cm DBH. The underlying species abundance distribution for Amazonian tree communities is lognormal, consistent with the idea that the rarest species have not yet been sampled. Enhanced sampling intensity is needed to fill the still large voids we have in plant diversity in Amazon forests.

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Appendix
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Literature
go back to reference Condit R, Hubbell SP, Lafrankie JV et al (1996) Species-area and species–individual relationships for tropical trees: a comparison of three 50-ha plots. J Ecol 84:549–562. doi:10.2307/2261477 CrossRef Condit R, Hubbell SP, Lafrankie JV et al (1996) Species-area and species–individual relationships for tropical trees: a comparison of three 50-ha plots. J Ecol 84:549–562. doi:10.​2307/​2261477 CrossRef
go back to reference Condit R, Foster RB, Hubbell SP et al (1998) Assessing forest diversity on small plots: calibration using species–individual curves from 50 ha plots. In: Dallmeier F, Comiskey JA (eds) Forest biodiversity research, monitoring and modeling. UNESCO/Parthenon Publishing Group, Paris/New York, pp 247–268 Condit R, Foster RB, Hubbell SP et al (1998) Assessing forest diversity on small plots: calibration using species–individual curves from 50 ha plots. In: Dallmeier F, Comiskey JA (eds) Forest biodiversity research, monitoring and modeling. UNESCO/Parthenon Publishing Group, Paris/New York, pp 247–268
go back to reference Duivenvoorden JF, Duque A, Cavelier J et al (2005) Density and diversity of plants in relation to soil nutrient reserves in well-drained upland forests in the north-western Amazon basin. K Danske Vidensk Selsk Biol Skr 55:25–35 Duivenvoorden JF, Duque A, Cavelier J et al (2005) Density and diversity of plants in relation to soil nutrient reserves in well-drained upland forests in the north-western Amazon basin. K Danske Vidensk Selsk Biol Skr 55:25–35
go back to reference Fisher RA, Steven Corbet A, Williams CB (1943) The relation between the number of species and the number of individuals in a random. J Anim Ecol 12:42–58CrossRef Fisher RA, Steven Corbet A, Williams CB (1943) The relation between the number of species and the number of individuals in a random. J Anim Ecol 12:42–58CrossRef
go back to reference Gentry AH (1988b) Changes in plant community diversity and floristic composition on environmental and geographical gradients. Ann Missouri Bot Gard 75:1–34CrossRef Gentry AH (1988b) Changes in plant community diversity and floristic composition on environmental and geographical gradients. Ann Missouri Bot Gard 75:1–34CrossRef
go back to reference Hubbell SP (2001) The unified neutral theory of biodiversity and biography Hubbell SP (2001) The unified neutral theory of biodiversity and biography
go back to reference Lips J, Duivenvoorden JF (2001) Caracterización ambiental. In: Duivenvoorden JF, Balslev H, Cavelier J et al (eds) Evaluación de recursos naturales no maderables en la Amzonía noroccidental. Universiteit van Amsterdam, Amsterdam, pp 19–46 Lips J, Duivenvoorden JF (2001) Caracterización ambiental. In: Duivenvoorden JF, Balslev H, Cavelier J et al (eds) Evaluación de recursos naturales no maderables en la Amzonía noroccidental. Universiteit van Amsterdam, Amsterdam, pp 19–46
go back to reference Magurran AE, Henderson PA (2003) Explaining the excess of rare species in natural species abundance distributions. Nature 422:714–716CrossRefPubMed Magurran AE, Henderson PA (2003) Explaining the excess of rare species in natural species abundance distributions. Nature 422:714–716CrossRefPubMed
go back to reference Myers N, Mittermeier RA, Mittermeier CG et al (2000) Biodiversity hotspots for conservation priorities. Nature 403:853–858CrossRefPubMed Myers N, Mittermeier RA, Mittermeier CG et al (2000) Biodiversity hotspots for conservation priorities. Nature 403:853–858CrossRefPubMed
go back to reference Pitman NCA, Terborgh J, Silman MR, Nuez P (1999) Tree species distributions in an upper Amazonian forest. Ecology 80:2651–2661CrossRef Pitman NCA, Terborgh J, Silman MR, Nuez P (1999) Tree species distributions in an upper Amazonian forest. Ecology 80:2651–2661CrossRef
go back to reference Pitman NCA, Terborgh JW, Silman MR et al (2001) Dominace and distribution of tree species in upper Amazonian terra firme forests. Ecology 82:2101–2117CrossRef Pitman NCA, Terborgh JW, Silman MR et al (2001) Dominace and distribution of tree species in upper Amazonian terra firme forests. Ecology 82:2101–2117CrossRef
go back to reference Prado PI, Miranda MD (2013) Fitting species abundance model with maximum likelihood Quick reference for sads package. 1–20 Prado PI, Miranda MD (2013) Fitting species abundance model with maximum likelihood Quick reference for sads package. 1–20
go back to reference R Development Core Team (2014) R: a language and environment for statistical computing. R Foundation for Statistical Computing, Vienna. ISBN 3-900051-07-0 R Development Core Team (2014) R: a language and environment for statistical computing. R Foundation for Statistical Computing, Vienna. ISBN 3-900051-07-0
go back to reference Sombroek WG (2000) Amazon landforms and soils in relation to biological diversity. Acta Amaz 30:81–100CrossRef Sombroek WG (2000) Amazon landforms and soils in relation to biological diversity. Acta Amaz 30:81–100CrossRef
go back to reference Sombroek W (2001) Spatial and temporal patterns of Amazon rainfall. Consequences for the planning of agricultural occupation and protection of primary forests. Ambio 30:388–396 Sombroek W (2001) Spatial and temporal patterns of Amazon rainfall. Consequences for the planning of agricultural occupation and protection of primary forests. Ambio 30:388–396
go back to reference ter Steege H, Pitman N, Sabatier D et al (2003) A spatial model of tree a—diversity and tree density for the Amazon. Biodivers Conserv 12:2255–2277CrossRef ter Steege H, Pitman N, Sabatier D et al (2003) A spatial model of tree a—diversity and tree density for the Amazon. Biodivers Conserv 12:2255–2277CrossRef
go back to reference ter Steege H, Pitman NCA, Killeen TJ et al (2015) Estimating the global conservation status of more than 15,000 Amazonian tree species. Science 1:e1500936. doi:10.1126/sciadv.1500936 ter Steege H, Pitman NCA, Killeen TJ et al (2015) Estimating the global conservation status of more than 15,000 Amazonian tree species. Science 1:e1500936. doi:10.​1126/​sciadv.​1500936
go back to reference Valencia R, Foster RB, Villa G et al (2004) Tree species distributions and local habitat variation in the Amazon: large forest plot in eastern Ecuador. J Ecol 92:214–229 Valencia R, Foster RB, Villa G et al (2004) Tree species distributions and local habitat variation in the Amazon: large forest plot in eastern Ecuador. J Ecol 92:214–229
go back to reference Zanne AE, López-González G, Coomes DA et al (2009) Global wood density database. Dryad Digit, Repos Zanne AE, López-González G, Coomes DA et al (2009) Global wood density database. Dryad Digit, Repos
Metadata
Title
Insights into regional patterns of Amazonian forest structure, diversity, and dominance from three large terra-firme forest dynamics plots
Authors
Alvaro Duque
Helene C. Muller-Landau
Renato Valencia
Dairon Cardenas
Stuart Davies
Alexandre de Oliveira
Álvaro J. Pérez
Hugo Romero-Saltos
Alberto Vicentini
Publication date
29-11-2016
Publisher
Springer Netherlands
Published in
Biodiversity and Conservation / Issue 3/2017
Print ISSN: 0960-3115
Electronic ISSN: 1572-9710
DOI
https://doi.org/10.1007/s10531-016-1265-9

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