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March 14, 2026New Phytologist1 citations

A global bioregionalisation for orchids

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DJDerio Antonio Jiménez‐LópezSRSantiago Ramirez‐BarahonaAZAlexander Zizka

Key Points

  • The aim is to establish a global bioregionalisation for orchids, focusing on phylogenetic diversity and environmental factors.
  • Utilized 732,359 orchid distribution records and phylogenetics of 19,123 species
  • Defined global bioregionalisation at 200 × 200 km resolution
  • Analyzed environmental drivers affecting realm formation
  • Identified six global orchid realms: Australian, Andean-Patagonian, Neotropical, Afrotropical, Indo-Malaysian, and Holarctic
  • Found 10 bioregions and four main transition zones
  • Mean annual precipitation and temperature were critical in delimiting realms

Abstract

Bioregionalisation is a hierarchical system that categorises geographical areas according to their biotic composition and evolutionary history. While a global bioregionalisation has been proposed for angiosperms, this is lacking for plant families with global relevance, such as orchids. We used 732 359 orchid distribution records and a phylogeny of 19 123 species to define the global bioregionalisation of orchids based on phylogenetic beta diversity at 200 × 200 km resolution. Using the resulting bioregionalisation, we analysed the environmental drivers that determine the formation of realms. Additionally, we assessed the effect of sampling completeness, different metrics, and spatial resolutions. We identified six global orchid realms (Australian, Andean-Patagonian, Neotropical, Afrotropical, Indo-Malaysian, and Holarctic) and 10 bioregions; four main transition zones were also detected. Mean annual precipitation and temperature, and precipitation and temperature seasonality, had the strongest influence on the delimitation of realms. We present a global bioregionalisation for orchids, identifying the environmental factors that determine the realms. More generally, these results highlight the importance of bioregionalisation for understanding evolutionary patterns of taxonomic families. Using a comprehensive seven-step methodology, we emphasize the need to account for sampling completeness and spatial resolution in such analyses.

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Cite This Study

Jiménez‐López et al. (2026) studied this question.

synapsesocial.com/papers/69b4b9fb18185d8a398023b9https://doi.org/10.1111/nph.71093
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