High mammal species turnover in forest patches immersed in biofuel plantations

Gabrielle Beca, Mauricio H. Vancine, Carolina S. Carvalho, Felipe Pedrosa, Rafael Souza C. Alves, Daiane Buscariol, Carlos A. Peres, Milton Cezar Ribeiro, Mauro Galetti

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75 Citations (Scopus)


Remnant habitat patches immersed within biofuel cropland matrices can retain considerable species diversity, although the effects of land use change on species persistence in historically modified landscapes remain unclear. The Atlantic Forest is one of the most fragmented South American biodiversity hotspots and retains about 12% of its original vegetation cover. Most of these remnants are distributed in small isolated fragments immersed mainly within pastures and sugarcane monocultures. Here we examine how species richness and composition of medium and large-sized mammals are explained by forest cover, structural area and forest edge amount at the landscape scale. We sampled 22 fragmented landscapes dominated by sugarcane plantations along a wide gradient of forest cover (3% to 96%) in southeastern Brazil. We recorded 88% of terrestrial mammal species expected for this region, but many likely local extirpations were detected at the landscape scale, with losses between 50% to 80% of species. Most of the landscapes were highly depleted of forest-specialist species, with replacements by exotics and/or species typical of non-forest habitats. We found that total mammalian species richness, which includes forest-specialists, generalists, exotics and non-forest dwelling species, was not affected by landscape metrics, such as forest cover, structural area and forest edge amount. Nevertheless, forest cover was important predictor of the presence of three ungulates, a medium-sized rodent and an armadillo. Local mammalian communities exhibited a high degree of species turnover between landscapes, representing 95% of the total beta-diversity. In this region, where there was no regional extinction, landholder compliance with the Brazilian Forest Bill and restoration measures will enhance habitat connectivity and mammal persistence across the wider unprotected countryside. (C) 2017 Elsevier Ltd. All rights reserved.

Original languageEnglish
Pages (from-to)352-359
Number of pages8
JournalBiological Conservation
Issue numberPart A
Early online date2 Mar 2017
Publication statusPublished - Jun 2017


  • Defaunation
  • Extinction risk
  • Forest fragmentation
  • Sugarcane matrix
  • Species turnover
  • Camera trapping

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