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Net primary productivity but not its remote-sensing proxies predict mammal diversity in Andean-Amazonian rainforests

  • Kim L. Holzmann
  • , Pedro Alonso-Alonso
  • , Yenny Correa-Carmona
  • , Andrea Pinos
  • , Felipe Yon
  • , Alejandro Lopera
  • , Gunnar Brehm
  • , Alexander Keller
  • , Ingolf Steffan-Dewenter
  • , Marcell K. Peters
  • University of Würzburg
  • Friedrich Schiller University Jena
  • Ludwig-Maximilians-Universität München
  • Andes Amazon Fund

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

Tropical forests are disappearing, but we have a limited understanding of the factors driving species coexistence in mammal communities of old-growth forest ecosystems. The total energy that is bound by plants is assumed to be a key factor determining mammalian species richness, but accurately measuring energy flows in complex ecosystems is difficult, and most studies therefore rely on remote-sensing-based surrogates of net primary productivity (NPP). We monitored mammal species richness across three seasons using camera traps on 26 study plots along a forested, elevational gradient from 245 to 3588 m above sea level in southeastern Peru for which a unique dataset on field-measured NPP exists. Using linear-regression models and path analysis, we disentangled the effects of climate and NPP on the diversity of mammals, testing the predictions of the more-individuals hypothesis, stating that energy availability drives the number of individuals and, thus, the number of coexisting species. We compared detailed field measurements of NPP with remote-sensing products (MODIS NPP and MODIS NDVI). Mammal species richness, abundance, and biomass decreased in a negative exponential pattern with elevation. Field-measured data on NPP, which was largely driven by temperature, was a strong predictor of both abundance and species richness, while remotely sensed proxies for NPP failed to accurately predict mammal diversity. Our study underpins the importance of field-based ecosystem data and emphasizes the role of high primary productivity for maintaining diverse mammal communities, which is a particularly pressing issue in light of recent anthropogenic impacts on the Amazonian forest system.

Original languageEnglish
Article numbere70059
JournalEcology
Volume106
Issue number3
DOIs
StatePublished - Mar 2025

Keywords

  • Andes
  • NPP
  • Peru
  • biodiversity patterns
  • diversity gradients
  • elevational gradients
  • energy-richness hypothesis
  • large mammals
  • more-individuals hypothesis
  • tropical mountains

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