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Dive into the research topics where Vania A. Vicente is active.

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Featured researches published by Vania A. Vicente.


Fungal Diversity | 2014

Proposed nomenclature for Pseudallescheria, Scedosporium and related genera

Michaela Lackner; G. Sybren de Hoog; Liyue Yang; Leandro F. Moreno; Sarah Abdalla Ahmed; Fritz Andreas; Josef Kaltseis; Markus Nagl; Cornelia Lass-Flörl; Brigitte Risslegger; Günter Rambach; Cornelia Speth; Vincent Robert; Walter Buzina; Sharon C.-A. Chen; Jean-Philippe Bouchara; José F. Cano-Lira; Josep Guarro; Josepa Gené; Fabiola Fernández Silva; Rosa M. T. Haido; Gerhard Haase; Vladimír Havlíček; Dea Garcia-Hermoso; Jacques F. Meis; Ferry Hagen; Martin Kirchmair; Johannes Rainer; Katharina Schwabenbauer; Mirjam Zoderer

As a result of fundamental changes in the International Code of Nomenclature on the use of separate names for sexual and asexual stages of fungi, generic names of many groups should be reconsidered. Members of the ECMM/ISHAM working group on Pseudallescheria/Scedosporium infections herein advocate a novel nomenclature for genera and species in Pseudallescheria, Scedosporium and allied taxa. The generic names Parascedosporium, Lomentospora, Petriella, Petriellopsis, and Scedosporium are proposed for a lineage within Microascaceae with mostly Scedosporium anamorphs producing slimy, annellidic conidia. Considering that Scedosporium has priority over Pseudallescheria and that Scedosporium prolificans is phylogenetically distinct from the other Scedosporium species, some name changes are proposed. Pseudallescheria minutispora and Petriellidium desertorum are renamed as Scedosporium minutisporum and S. desertorum, respectively. Scedosporium prolificans is renamed as Lomentospora prolificans.


Emerging Infectious Diseases | 2011

Molecular Epidemiology ofFonsecaeaSpecies

Mohammad Javad Najafzadeh; Jiufeng Sun; Vania A. Vicente; Corné H. W. Klaassen; Alexandro Bonifaz; A.H.G. Gerrits van den Ende; Steph B. J. Menken; G. Sybren de Hoog

To assess population diversities among 81 strains of fungi in the genus Fonsecaea that had been identified down to species level, we applied amplified fragment-length polymorphism (AFLP) technology and sequenced the internal transcribed spacer regions and the partial cell division cycle, beta-tubulin, and actin genes. Many species of the genus Fonsecaea cause human chromoblastomycosis. Strains originated from a global sampling of clinical and environmental sources in the Western Hemisphere, Asia, Africa, and Europe. According to AFLP fingerprinting, Fonsecaea isolates clustered in 5 groups corresponding with F. pedrosoi, F. monophora, and F. nubica: the latter 2 species each comprised 2 groups, and F. pedrosoi appeared to be of monophyletic origin. F. pedrosoi was found nearly exclusively in Central and South America. F. monophora and F. nubica were distributed worldwide, but both showed substantial geographic structuring. Clinical cases outside areas where Fonsecaea is endemic were probably distributed by human migration.


BMC Biotechnology | 2013

The capability of endophytic fungi for production of hemicellulases and related enzymes.

Diogo Robl; Priscila da Silva Delabona; Carla Montanari Mergel; Juan Diego Rojas; Patrícia dos Santos Costa; Ida Chapaval Pimentel; Vania A. Vicente; José Geraldo da Cruz Pradella; Gabriel Padilla

BackgroundThere is an imperative necessity for alternative sources of energy able to reduce the world dependence of fossil oil. One of the most successful options is ethanol obtained mainly from sugarcane and corn fermentation. The foremost residue from sugarcane industry is the bagasse, a rich lignocellulosic raw material uses for the production of ethanol second generation (2G). New cellulolytic and hemicellulytic enzymes are needed, in order to optimize the degradation of bagasse and production of ethanol 2G.ResultsThe ability to produce hemicellulases and related enzymes, suitable for lignocellulosic biomass deconstruction, was explored using 110 endophytic fungi and 9 fungi isolated from spoiled books in Brazil. Two initial selections were performed, one employing the esculin gel diffusion assay, and the other by culturing on agar plate media with beechwood xylan and liquor from the hydrothermal pretreatment of sugar cane bagasse. A total of 56 isolates were then grown at 29°C on steam-exploded delignified sugar cane bagasse (DEB) plus soybean bran (SB) (3:1), with measurement of the xylanase, pectinase, β-glucosidase, CMCase, and FPase activities. Twelve strains were selected, and their enzyme extracts were assessed using different substrates. Finally, the best six strains were grown under xylan and pectin, and several glycohydrolases activities were also assessed. These strains were identified morphologically and by sequencing the internal transcribed spacer (ITS) regions and the partial β-tubulin gene (BT2). The best six strains were identified as Aspergillus niger DR02, Trichoderma atroviride DR17 and DR19, Alternaria sp. DR45, Annulohypoxylon stigyum DR47 and Talaromyces wortmannii DR49. These strains produced glycohydrolases with different profiles, and production was highly influenced by the carbon sources in the media.ConclusionsThe selected endophytic fungi Aspergillus niger DR02, Trichoderma atroviride DR17 and DR19, Alternaria sp. DR45, Annulohypoxylon stigyum DR47 and Talaromyces wortmannii DR49 are excellent producers of hydrolytic enzymes to be used as part of blends to decompose sugarcane biomass at industrial level.


Veterinary Microbiology | 2012

Black yeast-like fungi associated with Lethargic Crab Disease (LCD) in the mangrove-land crab, Ucides cordatus (Ocypodidae)

Vania A. Vicente; Raphael Orélis-Ribeiro; Mohammad Javad Najafzadeh; Jiufeng Sun; Raquel Schier Guerra; Stephanie Miesch; Antonio Ostrensky; Jacques F. Meis; Corné H. W. Klaassen; G.S. de Hoog; Walter A. Boeger

Lethargic Crab Disease (LCD) caused extensive epizootic mortality of the mangrove land crab Ucides cordatus (Brachyura: Ocypodidae) along the Brazilian coast, mainly in the Northeastern region. The disease was named after the symptoms of slow movement of infected crabs. Causative agents were suspected to be two black yeast-like fungi of the family Herpotrichiellaceae (ascomycete order Chaetothyriales), judged by infected tissue biopsies from moribund U. cordatus. The aim of the present study is to prove that two species are involved in the disease: the recently described black yeast Exophiala cancerae, but also a less virulent, hitherto undescribed fonsecaea-like species, introduced here as the novel species Fonsecaea brasiliensis. Strains were identified by ITS rDNA sequencing, and species borderlines were established by multilocus sequencing and AFLP analysis. Fonsecaea brasiliensis proved to be closely related to the pathogenic species Cladophialophora devriesii which originally was isolated from a systemic infection in a human patient. The virulence of F. brasiliensis is lower than that of E. cancerae, as established by artificial inoculation of mangrove crabs.


Journal of Clinical Microbiology | 2015

Fonsecaea pugnacius, a Novel Agent of Disseminated Chromoblastomycosis

Conceição M. P. S. de Azevedo; Renata R. Gomes; Vania A. Vicente; Daniel Wagner de Castro Lima Santos; Sirlei Garcia Marques; Mariana Machado Fidelis do Nascimento; Caroline E. W. Andrade; Raimunda Ribeiro da Silva; Flavio Queiroz-Telles; G. Sybren de Hoog

ABSTRACT We report a fatal case of a chromoblastomycosis-like infection caused by a novel species of Fonsecaea in a 52-year-old immunocompetent Caucasian male from an area of chromoblastomycosis endemicity in Brazil. The patient had a 30-year history of slowly evolving, verrucous lesions on the right upper arm which gradually affected the entire arm, the left hemifacial area, and the nose. Subsequent dissemination to the brain was observed, which led to death of the patient. The internal transcribed spacer (ITS) and partial large subunit (LSU), BT2, and CDC42 genes of the isolates recovered from skin and brain were sequenced, confirming the novelty of the species. The species is clinically unique in causing brain abscesses secondary to chromoblastomycosis lesions despite the apparent intact immunity of the patient. Histopathologic appearances were very different, showing muriform cells in skin and hyphae in brain.


PLOS ONE | 2012

Molecular Characterization of Pathogenic Members of the Genus Fonsecaea Using Multilocus Analysis

Jiufeng Sun; Mohammed J. Najafzadeh; Albertus H. G. Gerrits van den Ende; Vania A. Vicente; Peiying Feng; Liyan Xi; Gerrit S. De Hoog

Members of the fungal genus Fonsecaea causing human chromoblastomycosis show substantial geographic structuring. Genetic identity of clinical and environmental strains suggests transmission from plant debris, while the evolutionary processes that have led to spatially separated populations have remained unexplained. Sequences of ITS, BT2, ACT1, Cdc42, Lac and HmgA were analyzed, either by direct sequencing or by cloning. Thirty-seven clinical and environmental Fonsecaea strains from Central and South America, Asia, Africa and Europe were sequenced and possible recombination events were calculated. Phylogenetic trees of Cdc42, Lac and HmgA were statistically supported, but ITS, BT2 and ACT1 trees were not. The Standardized Index of Association (IA S) did not detect recombination (IA S = 0.4778), neither did the Phi-test for separate genes. In Fonsecaea nubica non-synonymous mutations causing functional changes were observed in Lac gene, even though no selection pressures were detected with the neutrality test (Tajima D test, p>0.05). Genetic differentiation of populations for each gene showed separation of American, African and Asian populations. Strains of clinical vs. environmental origin showed genetic distances that were comparable or lower than found in geographic differentiation. In conclusion, here we demonstrated clonality of sibling species using multilocus data, geographic structuring of populations, and a low functional and structural selective constraint during evolution of the genus Fonsecaea.


Archives of Oral Biology | 2014

Antiadherent activity of Schinus terebinthifolius and Croton urucurana extracts on in vitro biofilm formation of Candida albicans and Streptococcus mutans.

Dicler de Sant'Anna Vitor Barbieri; Fabiana Tonial; Patricia V.A. Lopez; Beatriz Helena L. N. Sales Maia; Germana D. Santos; Marina de Oliveira Ribas; Chirlei Glienke; Vania A. Vicente

OBJECTIVE To evaluate the antiadherent property of crude, methanol and acetate methanol extract fractions from Schinus terebinthifolius and Croton urucurana in hydroalcoholic (HA) and dimethylsulfoxide (DMSO) solvents on in vitro biofilms formed by Streptococcus mutans and Candida albicans strains. DESIGN The minimal concentration of adherence (MICA) was determined to evaluate the antiadherent potential of extracts on the in vitro biofilm formation. The extracts of plants were subjected to thin layer chromatography (TLC) in order to detect what class of compounds was responsible for the antiadherent activity. Data were estimated by analysis of variance (ANOVA) complemented by Tukey test level of significance set at 5%. RESULTS Both plants demonstrated inhibition of S. mutans and C. albicans on in vitro biofilm formation. The biofilms of C. albicans were more efficiently inhibited by the S. terebinthifolius fraction of acetate-methanol and methanol in hydroalcoholic solvents (p<0.05). The S. mutans biofilms adherence was best inhibited by the S. terebinthifolius crude extract and its methanolic fraction, both in hydroalcoholic solvent (p<0.05). TLC of crude extracts and fractions of S. terebinthifolius detected the presence of several active compounds, including phenolic compounds, anthraquinones, terpenoids, and alkaloids. C. urucurana extracts confirmed activity for both microorganisms (p<0.05). However, higher concentrations were needed to achieve antiadherent activity, mainly to inhibit in vitro biofilm formation of C. albicans. CONCLUSION The antiadherent potential of both plants on in vitro biofilms formed by C. albicans and S. mutans were confirmed, suggesting the importance of studies about these extracts for therapeutic prevention of oral diseases associated with oral biofilms.


PLOS Neglected Tropical Diseases | 2016

Molecular Epidemiology of Agents of Human Chromoblastomycosis in Brazil with the Description of Two Novel Species

Renata R. Gomes; Vania A. Vicente; Conceição M. P. S. de Azevedo; Claudio Guedes Salgado; Moisés Batista da Silva; Flavio Queiroz-Telles; Sirlei Garcia Marques; Daniel Wagner de Castro Lima Santos; Tania S. de Andrade; Elizabeth H. Takagi; Katia S. Cruz; Gheniffer Fornari; Rosane Christine Hahn; Maria Lúcia Scroferneker; Rachel B. Caligine; Mauricio Ramírez-Castrillón; Daniella P. de Araujo; Daiane Heidrich; Arnaldo Lopes Colombo; G. S. de Hoog

The human mutilating disease chromoblastomycosis is caused by melanized members of the order Chaetothyriales. To assess population diversity among 123 clinical strains of agents of the disease in Brazil we applied sequencing of the rDNA internal transcribed spacer region, and partial cell division cycle and β-tubulin genes. Strains studied were limited to three clusters divided over the single family Herpotrichiellaceae known to comprise agents of the disease. A Fonsecaea cluster contained the most important agents, among which F. pedrosoi was prevalent with 80% of the total set of strains, followed by 13% for F. monophora, 3% for F. nubica, and a single isolate of F. pugnacius. Additional agents, among which two novel species, were located among members of the genus Rhinocladiella and Cyphellophora, with frequencies of 3% and 1%, respectively.


Mycopathologia | 2013

Black yeast biota in the mangrove, in search of the origin of the Lethargic Crab Disease (LCD)

Raquel Schier Guerra; Mariana Machado Fidelis do Nascimento; Stephanie Miesch; Mohammad Javad Najafzadeh; Raphael Orélis Ribeiro; Antonio Ostrensky; Gerrit S. De Hoog; Vania A. Vicente; W A Boeger

Knowledge of natural ecology is essential for a better understanding of pathogenicity and opportunism in black yeast-like fungi. Although etiological agents of diseases caused by these fungi are supposed to originate from the environment, their isolation from nature is difficult. This is probably due to their oligotrophic nature, low competitive ability, and, overall, insufficient data on their natural habitat. We obtained environmental samples from mangrove areas where mortalities by lethargic crab disease (LCD) are reported and areas without disease recorded. Isolation of chaetothyrialean black yeasts and relatives was performed using a highly selective protocol. Species-specific primers were used to determine if these isolates represented Exophiala cancerae or Fonsecaea brasiliensis, two proven agents of LCD, in order to test hypotheses about the origin of the disease. Isolates, identified by morphology as Fonsecaea- or Exophiala-like, were tested specific diagnostic markers for the fungi associated with LCD. Although several black fungi were isolated, the main causative agent of the LCD, E. cancerae, was not found. Molecular markers for F. brasiliensis revealed 10 positive bands for isolates from biofilms on mangrove leaves, branches, and aerial roots, of which four were confirmed by ITS sequencing. The absence of E. cancerae in environmental samples suggests that the species is dependent on the crab, as a genuine pathogen, different from F. brasiliensis, which is probably not dependent on the host species, U. cordatus. However, we did not attempt isolation from the marine water, which may represent the pathway of dispersion of the black yeast species between neighbor mangroves.


PLOS ONE | 2017

Phylogenomic analyses reveal the diversity of laccase-coding genes in Fonsecaea genomes.

Leandro F. Moreno; Peiying Feng; Vinicius A. Weiss; Vania A. Vicente; J. Benjamin Stielow; Sybren de Hoog; Kirsten Nielsen

The genus Fonsecaea comprises black yeast-like fungi of clinical relevance, including etiologic agents of chromoblastomycosis and cerebral phaeohyphomycosis. Presence of melanin and assimilation of monoaromatic hydrocarbons and alkylbenzenes have been proposed as virulence factors. Multicopper oxidase (MCO) is a family of enzymes including laccases, ferroxidases and ascorbate oxidases which are able to catalyze the oxidation of various aromatic organic compounds with the reduction of molecular oxygen to water. Additionally, laccases are required for the production of fungal melanins, a cell-wall black pigment recognized as a key polymer for pathogenicity and extremotolerance in black yeast-like fungi. Although the activity of laccase enzymes has previously been reported in many wood-rotting fungi, the diversity of laccase genes in Fonsecaea has not yet been assessed. In this study, we identified and characterized laccase-coding genes and determined their genomic location in five clinical and environmental Fonsecaea species. The identification of laccases sensu stricto will provide insights into carbon acquisition strategies as well as melanin production in Fonsecaea.

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Renata R. Gomes

Federal University of Paraná

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Sybren de Hoog

Centraalbureau voor Schimmelcultures

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Leandro F. Moreno

Federal University of Paraná

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Jiufeng Sun

Centers for Disease Control and Prevention

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Gheniffer Fornari

Federal University of Paraná

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Flavio Queiroz-Telles

Federal University of Paraná

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Germana D. Santos

Federal University of Paraná

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Vinicius A. Weiss

Federal University of Paraná

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