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April 10, 2026Communications Biology0 citationsOpen Access

Pollination and dispersal networks in the Amazonian tree flora

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HSHans ter SteegeCBCaio S. BallarinCPCarlos Eduardo Pinto

Key Points

  • The study aims to map the interactions between Amazonian tree species and their flower-visitors and assess the ecological roles of these relationships.
  • Collected flower-visiting data from 5,201 Amazonian tree species.
  • Analyzed interactions between tree genera and flower-visitors.
  • Identified dominant genera contributing to fruit resources and pollination.
  • Bees account for 74% of flower-visiting interactions among studied tree genera.
  • Sixteen tree genera represent 50% of all interactions with flower-visitors.
  • 80% of tree species depend on animals for pollination and seed dispersal.

Abstract

We collected flower-visiting data for 5,201 Amazonian trees species, corresponding to 50% of all known tree species and 94% of all estimated individuals in Amazonia. Bees are the most common flower-visitors responsible for 74% of all studied tree genera and 74.1% of all individual trees, followed by generalist flower-visitors (39.2%). Sixteen tree genera make up 50% of all interactions between tree genera and their flower-visitors. Two of those: Inga, Miconia, each provide more than 2% of all interactions at genus level while six: Protium, Eschweilera, Inga, Pouteria, Ocotea, and Virola each provide more than 2% of all interactions at the estimated tree population level, underscoring the importance of these tree genera in the forest. Forty hyperdominant genera are responsible for half of the fruit resources of the Amazonian disperser community. Nearly 80% of these Amazonian tree species rely on animals for both pollination and seed dispersal, and less than 1% are free from animal involvement in these key life stages. This strong biotic dependence highlights a critical point: animal-mediated interactions are not peripheral but central to the maintenance, regeneration, and spatial structure of Amazonian forests, which makes halting of defaunation in these forests a priority.

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Cite This Study

Steege et al. (2026) studied this question.

synapsesocial.com/papers/69d892d16c1944d70ce0407dhttps://doi.org/10.1038/s42003-026-09896-1
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