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Dive into the research topics where Vinicius F. Farjalla is active.

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Featured researches published by Vinicius F. Farjalla.


Brazilian Journal of Biology | 2008

Neotropical coastal lagoons: an appraisal of their biodiversity, functioning, threats and conservation management

Francisco de Assis Esteves; Adriano Caliman; Jayme M. Santangelo; Rafael D. Guariento; Vinicius F. Farjalla; Reinaldo Luiz Bozelli

Neotropical coastal lagoons (NCL) are human-dominated ecosystems. Their distribution along densely populated coastal areas of developing countries makes these systems among the most threatened in the world. Here, we summarize some aspects of the causes and consequences of NCL biodiversity, their functioning, their importance to the surrounding populations, their fragility, and their responses to local and global anthropogenic impacts and the challenges that Neotropical countries face in conserving these systems. Although still scarce and geographically concentrated, a growing body of studies has shown that NCLs are physiographically diversified systems, which harbor a considerable and particular proportion of the Neotropical inland aquatic biodiversity. Despite the fact that coastal lagoons are ecotones that are intricately connected to surrounding environments, they develop mechanisms for structural and functional regulation, which confer to these systems higher productivity and carrying capacities than surrounding ecosystems. Such traits attract residential developments and subsidize local traditional populations with important economic and aesthetic ecosystem revenues such as fisheries and scenic beauty. However, the disorganized human occupation around NCLs are causing profound impacts such as eutrophication, salinization, exotic species introduction, as well as other effects, which are ultimately imposing major habitat degradations and biodiversity extirpations in NCLs. We argue that interdisciplinary conservation strategies, which integrate scientific expertise, government officials, private companies and the general public, are the most likely to overcome the geographic and economic obstacles to NCL conservation.


Hydrobiologia | 2002

Nutrient limitation of bacterial production in clear water Amazonian ecosystems

Vinicius F. Farjalla; Francisco de Assis Esteves; Reinaldo Luiz Bozelli; Fábio Roland

The aim of this research was to determine the main limiting nutrient (carbon, nitrogen or phosphorus) to bacterial production in different clear water Amazonian ecosystems during the high water period, when there is influence of the flooded land, mainly as sources of organic matter. Five stations were sampled in three clear water ecosystems: Trombetas River, Lake Batata and Caranã Stream. We estimated in each station the nutrient concentration, bacterial production and bacterial abundance. The experiment was set up with GF/F filtered water from all stations together with additions of glucose (400 μM C), KNO3 (15 μM N) and KH2PO4 (5 μM P) in accordance with each treatment (C, N, P ,CN, CP, NP, CNP and no amends). Bacterial production was estimated after 24 h of incubation. We observed that the values of bacterial production after additions of phosphate alone (P treatment) were 2- to 6-fold greater than the values measured in control flasks. Additions of nitrate (N treatment) and glucose alone (C treatment) had no effect on the bacterial production in four out of five ecosystems studied. However, additions of glucose with phosphate (CP treatment) strongly stimulated bacterial production in all ecosystems studied, including treatments with phosphate addition only. We conclude that phosphorus is the main limiting nutrient to bacterioplankton production in these clear water Amazonian ecosystems during the high water period. In addition, we conclude that, together with phosphorus, additions of glucose stimulated the bacterial production mainly due to the low quality of the carbon pool present in these ecosystems.


Biodiversity and Conservation | 2010

The prominence of and biases in biodiversity and ecosystem functioning research

Adriano Caliman; Aliny P. F. Pires; Francisco de Assis Esteves; Reinaldo Luiz Bozelli; Vinicius F. Farjalla

The sub-discipline of biodiversity and ecosystem functioning (BEF) has emerged as a central topic in contemporary ecological research. However, to date no study has evaluated the prominence and publication biases in BEF research. Herein we report the results of a careful quantitative assessment of BEF research published in five core general ecology journals from 1990 to 2007 to determine the position of BEF research within ecology, identify patterns of research effort within BEF research, and discuss their probable proximal and historical causes. The relative importance of BEF publications increased exponentially during the period analyzed and was significantly greater than the average growth of ecological literature, affirming the prominence of BEF as a current paradigm in ecology. However, BEF research exhibited a strong bias toward experimental studies on terrestrial plant communities, with significantly lower effort devoted to the functional aspects of biodiversity in aquatic systems, multiple trophic level systems, and animal or microbial communities. Such trends may be explained by a combination of methodological adequacy and historic epistemological differences in ecological thinking. We suggest that BEF researchers should direct more effort toward the study of aquatic systems and animal communities, emphasize long-term and trophically complex experiments, such as those with multi-trophic microbial communities, employ larger-scale field observational studies and increase the use of integrative and theoretical studies. Many technical and analytical methodologies that are already employed in ecological research, such as stable isotopes, paleobiology, remote sensing, and model selection criteria, can facilitate these aims. Overcoming the above-mentioned shortcomings of current BEF research will greatly improve our ability to predict how biodiversity loss will affect ecosystem processes and services in natural ecosystems.


Microbial Ecology | 2009

Synergy of Fresh and Accumulated Organic Matter to Bacterial Growth

Vinicius F. Farjalla; Claudio Cardoso Marinho; Bias Marçal de Faria; André M. Amado; Francisco de Assis Esteves; Reinaldo Luiz Bozelli; Danilo Giroldo

The main goal of this research was to evaluate whether the mixture of fresh labile dissolved organic matter (DOM) and accumulated refractory DOM influences bacterial production, respiration, and growth efficiency (BGE) in aquatic ecosystems. Bacterial batch cultures were set up using DOM leached from aquatic macrophytes as the fresh DOM pool and DOM accumulated from a tropical humic lagoon. Two sets of experiments were performed and bacterial growth was followed in cultures composed of each carbon substrate (first experiment) and by carbon substrates combined (second experiment), with and without the addition of nitrogen and phosphorus. In both experiments, bacterial production, respiration, and BGE were always higher in cultures with N and P additions, indicating a consistent inorganic nutrient limitation. Bacterial production, respiration, and BGE were higher in cultures set up with leachate DOM than in cultures set up with humic DOM, indicating that the quality of the organic matter pool influenced the bacterial growth. Bacterial production and respiration were higher in the mixture of substrates (second experiment) than expected by bacterial production and respiration in single substrate cultures (first experiment). We suggest that the differences in the concentration of some compounds between DOM sources, the co-metabolism on carbon compound decomposition, and the higher diversity of molecules possibly support a greater bacterial diversity which might explain the higher bacterial growth observed. Finally, our results indicate that the mixture of fresh labile and accumulated refractory DOM that naturally occurs in aquatic ecosystems could accelerate the bacterial growth and bacterial DOM removal.


Ecology | 2012

Ecological determinism increases with organism size

Vinicius F. Farjalla; Diane S. Srivastava; Nicholas A. C. Marino; Fernanda Azevedo; Viviane Dib; Paloma Marinho Lopes; Alexandre S. Rosado; Reinaldo Luiz Bozelli; Francisco de Assis Esteves

After much debate, there is an emerging consensus that the composition of many ecological communities is determined both by species traits, as proposed by niche theory, as well as by chance events. A critical question for ecology is, therefore, which attributes of species predict the dominance of deterministic or stochastic processes. We outline two hypotheses by which organism size could determine which processes structure ecological communities, and we test these hypotheses by comparing the community structure in bromeliad phytotelmata of three groups of organisms (bacteria, zooplankton, and macroinvertebrates) that encompass a 10 000-fold gradient in body size, but live in the same habitat. Bacteria had no habitat associations, as would be expected from trait-neutral stochastic processes, but still showed exclusion among species pairs, as would be expected from niche-based processes. Macroinvertebrates had strong habitat and species associations, indicating niche-based processes. Zooplankton, with body size between bacteria and macroinvertebrates, showed intermediate habitat associations. We concluded that a key niche process, habitat filtering, strengthened with organism size, possibly because larger organisms are both less plastic in their fundamental niches and more able to be selective in dispersal. These results suggest that the relative importance of deterministic and stochastic processes may be predictable from organism size.


Archiv Fur Hydrobiologie | 2002

The relationship between DOC and planktonic bacteria in tropical coastal lagoons

Vinicius F. Farjalla; Bias Marçal de Faria; Francisco de Assis Esteves

We evaluated the relationship between DOC concentration and bacterial production, abundance, and biomass in four tropical coastal lagoons in the state of Rio de Janeiro, Brazil. We also evaluated the main nutrients limiting bacterial production in these lagoons, the bioavailability of bulk DOC to planktonic bacteria, and the Bacte- rial Growth Efficiency (BGE) of natural assemblages of bacteria; as well as how enrichment with inorganic nutrients affects BGE and DOC utilization by bacteria. Based on the DOC concentration and bacterial production, abundance, and biomass, sampled monthly, there was no correlation between DOC concentration and planktonic bacteria. Phosphorus is the main nutrient limiting bacterial production in these eco- systems; therefore, bacteria can be expected to be more dependent on phosphorus than on carbon concentration. Despite the high concentrations of carbon, addition of glu- cose (labile carbon) together with phosphorus stimulated bacterial production in two of the four lagoons, indicating that the quality of bulk DOC also limits bacteria there. Bacteria, in natural conditions, consumed from 2.3 to 8.0% of bulk DOC in the la- goons, and showed BGEs from 11 to 14%. Therefore, a large proportion of the DOC entering these ecosystems might accumulate. There was an increase in DOC consump- tion by bacteria and BGE after addition of nutrients. However, only a minor fraction of DOC (6.6 to 17.4%) was consumed by bacteria. We concluded that low phosphorus concentration and low quality of bulk DOC are the main bottom-up factors limiting bacterial growth in these tropical coastal lagoons.


Brazilian Journal of Biology | 2010

Temporal coherence among tropical coastal lagoons: a search for patterns and mechanisms.

Adriano Caliman; Luciana S. Carneiro; Jayme M. Santangelo; Rafael D. Guariento; A. P. F. Pires; A. L. Suhett; Leticia Barbosa Quesado; V. Scofield; Ellen da Silva Fonte; Paloma Marinho Lopes; L. F. Sanches; F. D. Azevedo; Claudio Cardoso Marinho; Reinaldo Luiz Bozelli; Francisco de Assis Esteves; Vinicius F. Farjalla

Temporal coherence (i.e., the degree of synchronicity of a given variable among ecological units within a predefined space) has been shown for several limnological features among temperate lakes, allowing predictions about the structure and function of ecosystems. However, there is little evidence of temporal coherence among tropical aquatic systems, where the climatic variability among seasons is less pronounced. Here, we used data from long-term monitoring of physical, chemical and biological variables to test the degree of temporal coherence among 18 tropical coastal lagoons. The water temperature and chlorophyll-a concentration had the highest and lowest temporal coherence among the lagoons, respectively, whereas the salinity and water colour had intermediate temporal coherence. The regional climactic factors were the main factors responsible for the coherence patterns in the water temperature and water colour, whereas the landscape position and morphometric characteristics explained much of the variation of the salinity and water colour among the lagoons. These results indicate that both local (lagoon morphometry) and regional (precipitation, air temperature) factors regulate the physical and chemical conditions of coastal lagoons by adjusting the terrestrial and marine subsidies at a landscape-scale. On the other hand, the chlorophyll-a concentration appears to be primarily regulated by specific local conditions resulting in a weak temporal coherence among the ecosystems. We concluded that temporal coherence in tropical ecosystems is possible, at least for some environmental features, and should be evaluated for other tropical ecosystems. Our results also reinforce that aquatic ecosystems should be studied more broadly to accomplish a full understanding of their structure and function.


Nature Ecology and Evolution | 2016

High taxonomic variability despite stable functional structure across microbial communities

Stilianos Louca; Saulo M. S. Jacques; Aliny P. F. Pires; Juliana S. Leal; Diane S. Srivastava; Laura Wegener Parfrey; Vinicius F. Farjalla; Michael Doebeli

Understanding the processes that are driving variation of natural microbial communities across space or time is a major challenge for ecologists. Environmental conditions strongly shape the metabolic function of microbial communities; however, other processes such as biotic interactions, random demographic drift or dispersal limitation may also influence community dynamics. The relative importance of these processes and their effects on community function remain largely unknown. To address this uncertainty, here we examined bacterial and archaeal communities in replicate ‘miniature’ aquatic ecosystems contained within the foliage of wild bromeliads. We used marker gene sequencing to infer the taxonomic composition within nine metabolic functional groups, and shotgun environmental DNA sequencing to estimate the relative abundances of these groups. We found that all of the bromeliads exhibited remarkably similar functional community structures, but that the taxonomic composition within individual functional groups was highly variable. Furthermore, using statistical analyses, we found that non-neutral processes, including environmental filtering and potentially biotic interactions, at least partly shaped the composition within functional groups and were more important than spatial dispersal limitation and demographic drift. Hence both the functional structure and taxonomic composition within functional groups of natural microbial communities may be shaped by non-neutral and roughly separate processes.


Ecology | 2015

Dominant predators mediate the impact of habitat size on trophic structure in bromeliad invertebrate communities

Jana S. Petermann; Vinicius F. Farjalla; Merlijn Jocque; Pavel Kratina; A. Andrew M. MacDonald; Nicholas A. C. Marino; Paula M. de Omena; Gustavo C. O. Piccoli; Barbara A. Richardson; Michael J. Richardson; Gustavo Q. Romero; Martín Videla; Diane S. Srivastava

Local habitat size has been shown to influence colonization and extinction processes of species in patchy environments. However, species differ in body size, mobility, and trophic level, and may not respond in the same way to habitat size. Thus far, we have a limited understanding of how habitat size influences the structure of multitrophic communities and to what extent the effects may be generalizable over a broad geographic range. Here, we used water-filled bromeliads of different sizes as a natural model system to examine the effects of habitat size on the trophic structure of their inhabiting invertebrate communities. We collected composition and biomass data from 651 bromeliad communities from eight sites across Central and South America differing in environmental conditions, species pools, and the presence of large-bodied odonate predators. We found that trophic structure in the communities changed dramatically with changes in habitat (bromeliad) size. Detritivore : resource ratios showed a consistent negative relationship with habitat size across sites. In contrast, changes in predator: detritivore (prey) ratios depended on the presence of odonates as dominant predators in the regional pool. At sites without odonates, predator: detritivore biomass ratios decreased with increasing habitat size. At sites with odonates, we found odonates to be more frequently present in large than in small bromeliads, and predator: detritivore biomass ratios increased with increasing habitat size to the point where some trophic pyramids became inverted. Our results show that the distribution of biomass amongst food-web levels depends strongly on habitat size, largely irrespective of geographic differences in environmental conditions or detritivore species compositions. However, the presence of large-bodied predators in the regional species pool may fundamentally alter this relationship between habitat size and trophic structure. We conclude that taking into account the response and multitrophic effects of dominant, mobile species may be critical when predicting changes in community structure along a habitat-size gradient.


Frontiers in Microbiology | 2013

Tropical freshwater ecosystems have lower bacterial growth efficiency than temperate ones.

André Megali Amado; Frederico Meirelles-Pereira; Luciana O. Vidal; Hugo Sarmento Sarmento; Albert Luiz Suhett; Vinicius F. Farjalla; James B. Cotner; Fábio Roland

Current models and observations indicate that bacterial respiration should increase and growth efficiency (BGE) should decrease with increasing temperatures. However, these models and observations are mostly derived from data collected in temperate regions, and the tropics are under-represented. The aim of this work was to compare bacterial metabolism, namely bacterial production (BP) and respiration (BR), bacterial growth efficiency (BGE) and bacterial carbon demand (BCD) between tropical and temperate ecosystems via a literature review and using unpublished data. We hypothesized that (1) tropical ecosystems have higher metabolism than temperate ones and, (2) that BGE is lower in tropical relative to temperate ecosystems. We collected a total of 498 coupled BP and BR observations (Ntotal = 498; Ntemperate = 301; Ntropical = 197), calculated BGE (BP/(BP+BR)) and BCD (BP+BR) for each case and examined patterns using a model II regression analysis and compared each parameter between the two regions using non-parametric Mann–Whitney U test. We observed a significant positive linear regression between BR and BP for the whole dataset, and also for tropical and temperate data separately. We found that BP, BR and BCD were higher in the tropics, but BGE was lower compared to temperate regions. Also, BR rates per BP unit were at least two fold higher in the tropics than in temperate ecosystems. We argue that higher temperature, nutrient limitation, and light exposure all contribute to lower BGE in the tropics, mediated through effects on thermodynamics, substrate stoichiometry, nutrient availability and interactions with photochemically produced compounds. More efforts are needed in this study area in the tropics, but our work indicates that bottom-up (nutrient availability and resource stoichiometry) and top-down (grazer pressure) processes, coupled with thermodynamic constraints, might contribute to the lower BGE in the tropics relative to temperate regions.

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Francisco de Assis Esteves

Federal University of Rio de Janeiro

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Reinaldo Luiz Bozelli

Federal University of Rio de Janeiro

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Diane S. Srivastava

University of British Columbia

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Adriano Caliman

Federal University of Rio de Janeiro

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Nicholas A. C. Marino

Federal University of Rio de Janeiro

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Aliny P. F. Pires

Federal University of Rio de Janeiro

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Fábio Roland

Universidade Federal de Juiz de Fora

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Luciana S. Carneiro

Federal University of Rio de Janeiro

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Albert Luiz Suhett

Federal University of Rio de Janeiro

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Alex Enrich-Prast

Federal University of Rio de Janeiro

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