Fabricio Beggiato Baccaro
Federal University of Amazonas
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Featured researches published by Fabricio Beggiato Baccaro.
Plant Ecology & Diversity | 2014
Juliana Schietti; Thaise Emilio; Camilo Daleles Rennó; Debora Pignatari Drucker; Flávia R. C. Costa; Anselmo Nogueira; Fabricio Beggiato Baccaro; Fernando O.G. Figueiredo; Carolina V. Castilho; V. F. Kinupp; Jean-Louis Guillaumet; Ana Raquel M. Garcia; Albertina P. Lima; William E. Magnusson
Background: Plant composition changes with topography and edaphic gradients that correlate with soil-water and nutrient availability. Data on soil water for the Amazon Basin are scarce, limiting the possibility of distinguishing between soil and soil-water influences on plant composition. Aim: We tested a new proxy for water table depth, the terrain height above nearest drainage (HAND), as a predictor of composition in trees, lianas, palms, shrubs, and herbs and compared HAND to conventional measures of height above sea level (HASL) and horizontal distances from nearest drainage (HDND). Methods: Plant-species composition in 72 plots distributed across 64 km2 of lowland evergreen terra firme forest was summarised using non-metric multidimensional scaling (NMDS). NMDS scores were regressed against estimates of HAND, HASL and HDND. Results: Plant composition was highly correlated with the vertical distance from water table, capturing up to 82% of variation. All life forms showed highest turnover rates in the zone with seasonally water-saturated soils, which can extend 350 m from stream margins. Conclusions: Floristic composition is closely related to water table depth, and HAND appears to be the most robust available topographical metric of soil-water gradients. Brazilian conservation laws protecting 30-m-wide riparian buffers are likely to be too narrow to encompass the full zone of highest floristic turnover and may be ineffective in safeguarding riparian plant diversity.
Ecological Entomology | 2012
Fabricio Beggiato Baccaro; Jorge Luiz Pereira de Souza; Elizabeth Franklin; Victor Lemes Landeiro; William E. Magnusson
1. Ants are highly interactive organisms and dominant species are considered to be able to control the species richness of other ants via competitive exclusion. However, depending on the scale studied, inter‐specific competition may or may not structure biological assemblages. To date, ant dominance–richness relationships have only been studied in small sample units, where a few dominant colonies could plausibly control most of the sample unit.
Proceedings of the Royal Society B: Biological Sciences | 2015
Heloise Gibb; Nathan J. Sanders; Robert R. Dunn; Simon J. Watson; Manoli Photakis; Sílvia Abril; Alan N. Andersen; Elena Angulo; Inge Armbrecht; Xavier Arnan; Fabricio Beggiato Baccaro; Tom R. Bishop; Raphaël Boulay; Cristina Castracani; Israel Del Toro; Thibaut Delsinne; Mireia Diaz; David A. Donoso; Martha L. Enríquez; Tom M. Fayle; Donald H. Feener; Matthew C. Fitzpatrick; Crisanto Gómez; Donato A. Grasso; Sarah Groc; Brain Heterick; Benjamin D. Hoffmann; Lori Lach; John E. Lattke; Maurice Leponce
Many studies have focused on the impacts of climate change on biological assemblages, yet little is known about how climate interacts with other major anthropogenic influences on biodiversity, such as habitat disturbance. Using a unique global database of 1128 local ant assemblages, we examined whether climate mediates the effects of habitat disturbance on assemblage structure at a global scale. Species richness and evenness were associated positively with temperature, and negatively with disturbance. However, the interaction among temperature, precipitation and disturbance shaped species richness and evenness. The effect was manifested through a failure of species richness to increase substantially with temperature in transformed habitats at low precipitation. At low precipitation levels, evenness increased with temperature in undisturbed sites, peaked at medium temperatures in disturbed sites and remained low in transformed sites. In warmer climates with lower rainfall, the effects of increasing disturbance on species richness and evenness were akin to decreases in temperature of up to 9°C. Anthropogenic disturbance and ongoing climate change may interact in complicated ways to shape the structure of assemblages, with hot, arid environments likely to be at greatest risk.
Check List | 2012
Patrícia Nakayama Miranda; Marco Antonio de Oliveira; Fabricio Beggiato Baccaro; Elder Ferreira Morato; Jacques H. C. Delabie
The ant fauna of state of Acre, Brazilian Amazon, is poorly known. The aim of this study was to compile the species sampled in different areas in the State of Acre. An inventory was carried out in pristine forest in the municipality of Xapuri. This list was complemented with the information of a previous inventory carried out in a forest fragment in the municipality of Senador Guiomard and with a list of species deposited at the Entomological Collection of National Institute of Amazonian Research– INPA. The resulting list covered 268 species distributed in 52 genera and nine subfamilies, and records 23 species and four morphospecies for the first time in the state of Acre. Due to the large environmental heterogeneity, future inventories will be crucial to properly describe and understand ant species distribution patterns in southwestern Amazon.
Insect Conservation and Diversity | 2017
Catherine L. Parr; Robert R. Dunn; Nathan J. Sanders; Michael D. Weiser; Manoli Photakis; Tom R. Bishop; Matthew C. Fitzpatrick; Xavier Arnan; Fabricio Beggiato Baccaro; Carlos Rodrigues Brandão; Lacy D. Chick; David A. Donoso; Tom M. Fayle; Crisanto Gómez; Blair F. Grossman; Thinandavha C. Munyai; Renata Pacheco; Javier Retana; Andrew J. Robinson; Katayo Sagata; Rogério R. Silva; Melanie Tista; Heraldo L. Vasconcelos; Michelle Yates; Heloise Gibb
In recent years the focus in ecology has shifted from species to a greater emphasis on functional traits. In tandem with this shift, a number of trait databases have been developed covering a range of taxa. Here, we introduce the GlobalAnts database. Globally, ants are dominant, diverse and provide a range of ecosystem functions. The database represents a significant tool for ecology in that it (i) contributes to a global archive of ant traits (morphology, ecology and life history) which complements existing ant databases and (ii) promotes a trait‐based approach in ant and other insect ecology through a broad set of standardised traits. The GlobalAnts database is unique in that it represents the largest online database of functional traits with associated georeferenced assemblage‐level data (abundance and/or occupancy) for any animal group with 9056 ant species and morphospecies records for entire local assemblages across 4416 sites. We describe the structure of the database, types of traits included and present a summary of data coverage. The value of the database is demonstrated through an initial examination of trait distributions across subfamilies, continents and biomes. Striking biogeographic differences in ant traits are highlighted which raise intriguing questions as to the mechanisms generating them.
PLOS ONE | 2015
Juliana Lins; Helena Pinto Lima; Fabricio Beggiato Baccaro; V. F. Kinupp; Glenn H. Shepard; Charles R. Clement
Historical ecologists have demonstrated legacy effects in apparently wild landscapes in Europe, North America, Mesoamerica, Amazonia, Africa and Oceania. People live and farm in archaeological sites today in many parts of the world, but nobody has looked for the legacies of past human occupations in the most dynamic areas in these sites: homegardens. Here we show that the useful flora of modern homegardens is partially a legacy of pre-Columbian occupations in Central Amazonia: the more complex the archaeological context, the more variable the floristic composition of useful native plants in homegardens cultivated there today. Species diversity was 10% higher in homegardens situated in multi-occupational archaeological contexts compared with homegardens situated in single-occupational ones. Species heterogeneity (β-diversity) among archaeological contexts was similar for the whole set of species, but markedly different when only native Amazonian species were included, suggesting the influence of pre-conquest indigenous occupations on current homegarden species composition. Our findings show that the legacy of pre-Columbian occupations is visible in the most dynamic of all agroecosystems, adding another dimension to the human footprint in the Amazonian landscape.
Ecology | 2017
Heloise Gibb; Rob Dunn; Nathan J. Sanders; Blair F. Grossman; Manoli Photakis; Sílvia Abril; Donat Agosti; Alan N. Andersen; Elena Angulo; Inge Armbrecht; Xavier Arnan; Fabricio Beggiato Baccaro; Tom R. Bishop; Raphaël Boulay; Carsten A. Brühl; Cristina Castracani; Xim Cerdá; Israel Del Toro; Thibaut Delsinne; Mireia Diaz; David A. Donoso; Aaron M. Ellison; Martha L. Enríquez; Tom M. Fayle; Donald H. Feener; Brian L. Fisher; Robert N. Fisher; Matthew C. Fitzpatrick; Crisanto Gómez; Nicholas J. Gotelli
What forces structure ecological assemblages? A key limitation to general insights about assemblage structure is the availability of data that are collected at a small spatial grain (local assemblages) and a large spatial extent (global coverage). Here, we present published and unpublished data from 51 ,388 ant abundance and occurrence records of more than 2,693 species and 7,953 morphospecies from local assemblages collected at 4,212 locations around the world. Ants were selected because they are diverse and abundant globally, comprise a large fraction of animal biomass in most terrestrial communities, and are key contributors to a range of ecosystem functions. Data were collected between 1949 and 2014, and include, for each geo-referenced sampling site, both the identity of the ants collected and details of sampling design, habitat type, and degree of disturbance. The aim of compiling this data set was to provide comprehensive species abundance data in order to test relationships between assemblage structure and environmental and biogeographic factors. Data were collected using a variety of standardized methods, such as pitfall and Winkler traps, and will be valuable for studies investigating large-scale forces structuring local assemblages. Understanding such relationships is particularly critical under current rates of global change. We encourage authors holding additional data on systematically collected ant assemblages, especially those in dry and cold, and remote areas, to contact us and contribute their data to this growing data set.
Journal of Ecology | 2016
Juliana Schietti; Demétrius Martins; Thaise Emilio; Priscila Souza; Carolina Levis; Fabricio Beggiato Baccaro; José Luiz Purri da Veiga Pinto; Gabriel M. Moulatlet; Scott C. Stark; Kelly Sarmento; R. Nazaré O. de Araújo; Flávia R. C. Costa; Jochen Schöngart; Carlos A. Quesada; Scott R. Saleska; Javier Tomasella; William E. Magnusson
A negative relationship between stand biomass and the density of stems is expected to develop during the self-thinning process in resource-limited forests; this leads to a large proportion of the total biomass occurring in large trees. Nevertheless, frequent disturbance regimes can reduce self-thinning and the accumulation of large trees. We investigated size-density relationships and the contribution of large trees (dbh ≥ 70 cm) to stand biomass in 55 1-ha plots along a 600 km transect in central-southern Amazonia. The effects of natural-disturbance gradients (frequency of storms and soil characteristics) and seasonality on forest-structure components (density of stems and mean individual mass) and stand biomass were examined. Contrary to self-thinning predictions, stand biomass increased in forests with higher stem densities. Large trees contained only an average of 5% of stand biomass, and half of the stand biomass was represented by small trees with diameters
Journal of Evolutionary Biology | 2016
L. Chifflet; M. S. Rodriguero; L. A. Calcaterra; O. Rey; P. A. Dinghi; Fabricio Beggiato Baccaro; Jorge Souza; P. Follett; Viviana A. Confalonieri
The evolutionary history of invasive species within their native range may involve key processes that allow them to colonize new habitats. Therefore, phylogeographic studies of invasive species within their native ranges are useful to understand invasion biology in an evolutionary context. Here we integrated classical and Bayesian phylogeographic methods using mitochondrial and nuclear DNA markers with a palaeodistribution modelling approach, to infer the phylogeographic history of the invasive ant Wasmannia auropunctata across its native distribution in South America. We discuss our results in the context of the recent establishment of this mostly tropical species in the Mediterranean region. Our Bayesian phylogeographic analysis suggests that the common ancestor of the two main clades of W. auropunctata occurred in central Brazil during the Pliocene. Clade A would have differentiated northward and clade B southward, followed by a secondary contact beginning about 380 000 years ago in central South America. There were differences in the most suitable habitats among clades when considering three distinct climatic periods, suggesting that genetic differentiation was accompanied by changes in niche requirements, clade A being a tropical lineage and clade B a subtropical and temperate lineage. Only clade B reached more southern latitudes, with a colder climate than that of northern South America. This is concordant with the adaptation of this originally tropical ant species to temperate climates prior to its successful establishment in the Mediterranean region. This study highlights the usefulness of exploring the evolutionary history of invasive species within their native ranges to better understand biological invasions.
Archive | 2014
William E. Magnusson; Ben Lawson; Fabricio Beggiato Baccaro; Carolina V. Castilho; Guy Castley; Flávia R. C. Costa; Debora Pignatari Drucker; Elizabeth Franklin; Albertina P. Lima; Regina Luizão; Fernando Medonca; Flavia Pezzini; Juliana Schietti; José Julio de Toledo; Luciano M. Verdade; Jean-Marc Hero
Globally, natural resource management agencies are increasingly recognizing the importance of long-term ecological research (LTER) for monitoring biodiversity, ranging from relatively simple, known, local-level issues, such as managing tourist impacts in a conservation park, to more complex, multifaceted, pervasive, and far-reaching impacts, such as global climate change. Much previous literature has confused protocols for LTER projects to answer current research questions, with developing a system for long-term ecological monitoring. Contrary to perceptions that these LTER systems are not driven by well-defined objectives, we argue that LTER systems can be designed and implemented with the specific objective of providing a basis for both LTER projects and long-term monitoring. We present an overview of RAPELD, an LTER system developed in Brazil, with comparable infrastructure established in Australia and Nepal. The standardized biodiversity infrastructure and research platform provides a long-term basis for powerful multi-disciplinary, multi-scale analyses.