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Data from: Effects of vegetation density on the diversity of lizards in an area of the Brazilian Cerrado

Ferreto Fiorillo, Bruno; Piatti, Liliana; Martins, Marcio

Abstract

The Cerrado is a highly threatened biome that harbors a great portion of Brazilian biodiversity, including many endemic species. Such richness may reflect its environmental heterogeneity, which includes different vegetation types (from grasslands to forests). Several endemic species in the Cerrado are strongly associated with open vegetation types. Recent studies have shown that woody encroachment can negatively impact several components of biodiversity. In the present study, we provide information on variation in lizard diversity across different vegetation types in a protected area located in the southern portion of the Cerrado and evaluated the effect of vegetation density on lizard taxonomic, functional, and phylogenetic diversity. We predicted that the three aspects of lizard diversity would be negatively affected by vegetation density and that Beta diversity would vary significantly across the vegetation gradient. We confirmed nearly all of our predictions, except for functional diversity, which, contrary to our expectations, was positively influenced by vegetation density. We also found that Beta diversity indices based on both species composition/abundance and phylogenetic features of communities experience a significant turnover across the vegetation density gradient. This study greatly strengthens previous studies that suggest a negative impact of vegetation density (and, consequently, woody encroachment) on lizard diversity. Therefore, managers of protected areas in the Cerrado should consider the use of strategies to avoid woody encroachment, like fire management with prescribed fires.

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SUPPLEMENTARY FIGURES Effects of vegetation density on the diversity of lizards in an area of the Brazilian Cerrado Bruno F. Fiorillo1, 2,3*, Liliana Piatti4, Marcio Martins5 1 Escola Estadual Manoel Ferraz Professor, Bom Jesus dos Perdões, SP, Brazil. 2 Escola Superior de Agricultura Luiz de Queiroz, Programa de Pós-Graduação em Ecologia Aplicada, Universidade de São Paulo, Piracicaba, SP, Brazil. 3 Herp Trips, Rodovia SP-139, km 80, São Miguel Arcanjo, SP, Brazil. 4 Laboratório de Ecologia, Instituto de Biociências, Universidade Federal de Mato Grosso do Sul, 79070-900, Campo Grande, MS, SP, Brazil 5 Departamento de Ecologia, Instituto de Biociências, Universidade de São Paulo, 05508090 São Paulo, SP, Brazil. * Corresponding author. E-mail: [email protected] Figure S1. Phylogenetic tree of lizard species sampled with pitfall traps at the Santa Bárbara Ecological Station. Only species with more than five individuals sampled are included. Colors represent each family. Blue: Gymnophtalmidae; Gold: Teiidae; Orange: Anolidae; Purple: Scincidae. Figure S2. Shepard plot (or stress plot) to observe the goodness of fit of the data into the NMDS analysis. Figure S3. Half-normal plots with Simulation Envelopes of the best fitted generalized linear models showing the predicted effect of A − NDVI (300 m buffer) on lizard richness; B− NDVI (300 m buffer) on lizard abundance. Figure S4. Forest plot illustrating 95% CI of models of taxonomic, phylogenetic and functional diversity, and LCBD in different scales. Error bar colors represent model’s slope, positive (blue) or negative (red).