Community Phylogenetics in Tropical Rainforests

Authors

  • Andreas Dubois Senior Lecturer, Institute of Intelligent Systems, European Institute of AI, Berlin, Germany Author
  • Nina Schmidt Assistant Professor, Department of Computer Science, Central European Tech University, Vienna, Austria Author
  • Daniel Lindberg Postdoctoral Researcher, Institute of Intelligent Systems, Central European Tech University, Vienna, Austria Author

Keywords:

community phylogenetics, tropical rainforest, phylogenetic diversity, net relatedness index, elevational gradient, assembly rules, environmental filtering, Neotropical biodiversity

Abstract

Community phylogenetics examines the evolutionary relationships among species co-occurring within ecological assemblages, revealing how historical diversification and present-day environmental filtering jointly structure biodiversity. Tropical rainforests, which harbour more than 50% of terrestrial species despite covering less than 7% of Earth's land surface, represent ideal systems for community phylogenetic analysis because of their exceptional species richness, complex vertical stratification, and long evolutionary histories. This study quantified community phylogenetic structure across 48 one-hectare plots distributed along elevational gradients (200-2,800 m a.s.l.) in three Neotropical rainforest regions: the Colombian Choco, the Peruvian Amazon, and the Atlantic Forest of Brazil. Using a time-calibrated molecular phylogeny encompassing 1,847 vertebrate and arthropod species, we computed net relatedness index (NRI), nearest taxon index (NTI), and phylogenetic diversity (PD) metrics for each plot. Lowland communities exhibited significant phylogenetic overdispersion (mean NRI = -2.14 +- 0.87), consistent with competitive exclusion as the primary assembly process. Montane communities above 1,800 m showed phylogenetic clustering (mean NRI = +1.98 +- 0.74), indicative of strong environmental filtering. Phylogenetic diversity peaked at mid-elevations (1,000-1,400 m) and correlated positively with rainfall seasonality (r = 0.73, p < 0.001) and negatively with temperature variability (r = -0.61, p < 0.001). Land-use intensity significantly eroded phylogenetic diversity across all elevations, with logged forests retaining only 68.4% of old-growth PD values. These findings provide empirical support for dual-filter assembly theory and identify mid-elevation zones as phylogenetic diversity hotspots warranting priority conservation attention.

Author Biographies

  • Andreas Dubois, Senior Lecturer, Institute of Intelligent Systems, European Institute of AI, Berlin, Germany

    Senior Lecturer, Institute of Intelligent Systems, European Institute of AI, Berlin, Germany

  • Nina Schmidt, Assistant Professor, Department of Computer Science, Central European Tech University, Vienna, Austria

    Assistant Professor, Department of Computer Science, Central European Tech University, Vienna, Austria

  • Daniel Lindberg, Postdoctoral Researcher, Institute of Intelligent Systems, Central European Tech University, Vienna, Austria

    Postdoctoral Researcher, Institute of Intelligent Systems, Central European Tech University, Vienna, Austria

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Published

2024-06-15

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How to Cite

Community Phylogenetics in Tropical Rainforests. (2024). International Journal of Animal Biodiversity, Conservation and Systematics ( IJABC), 4(1), 9-16. https://stanfordgroup.org/index.php/IJABC/article/view/251 (Original work published 2026)

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