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1.
Vector Borne Zoonotic Dis ; 15(11): 694-700, 2015 Nov.
Article in English | MEDLINE | ID: mdl-26501215

ABSTRACT

Arenavirus Sabiá was originally isolated from a fatal human infection in Brazil, and after the occurrence of the second fatal human case in São Paulo state, epidemiologic and virologic studies were performed in the area where the patient lived, aiming at the identification of the Sabiá natural rodent reservoir. A broadly cross-reactive enzyme-linked immunosorbent assay (ELISA) was used to screen for antibody-positive samples. Antibodies to arenavirus were detected in two of the 55 samples of Calomys tener, and from these results, samples of rodents were analyzed by a broad RT-PCR assay. RT-PCR amplification detected arenavirus sequences in five of the 55 C. tener samples, and sequencing showed that this virus is a distinct form of Sabiá virus. Thus, we describe here the evidence for the circulation of a new arenavirus in Brazil (proposed name Pinhal virus) and its genetic characterization compared to other arenaviruses. This study also suggests C. tener as a probable rodent reservoir for this virus and associates this new virus with the lineage C of New World arenaviruses. Although we have defined some characteristics of this virus, so far, there is no evidence of its involvement in human disease.


Subject(s)
Arenaviridae Infections/veterinary , Arenaviruses, New World/isolation & purification , Sigmodontinae/virology , Animals , Antibodies, Viral/blood , Arenaviridae Infections/virology , Arenaviruses, New World/classification , Arenaviruses, New World/genetics , Arenaviruses, New World/immunology , Brazil/epidemiology , Disease Reservoirs/veterinary , Enzyme-Linked Immunosorbent Assay , Phylogeny
2.
J Med Entomol ; 47(4): 504-26, 2010 Jul.
Article in English | MEDLINE | ID: mdl-20695266

ABSTRACT

Anopheles albertoi Unti and Anopheles arthuri Unti are revived from the synonymy with Anopheles strodei Root, and a distinct morphological form (designated in this study as Anopheles CP Form) from the Strodei Complex of Anopheles (Nyssorhynchus) is characterized. The male genitalia of An. arthuri and An. albertoi are described and illustrated for the first time. An. strodei, An. arthuri, and An. albertoi were first distinguished based on scanning electron microphotos of the eggs, and then each egg type was associated with diagnostic characters of the male genitalia. Identification of Anopheles CP Form was based on morphological characters of the male genitalia, characterized and illustrated in this study. Molecular phylogenetic analysis was most clear when an outgroup was not included, in which case using the nuclear white gene, or the white gene in combination with the mitochondrial cytochrome c oxidase subunit I (COI) gene, clearly separated these four taxa. When Anopheles quadrimaculatus Say and Anopheles stephensi Liston were included as an outgroup, combined white and COI data resolved An. strodei and An. albertoi, whereas An. arthuri was not well resolved. The single sequence of Anopheles CP Form was recovered well separated from other groups in all analyses.


Subject(s)
Culicidae/anatomy & histology , Culicidae/classification , Animals , Culicidae/genetics , DNA/genetics , Female , Genitalia, Male/anatomy & histology , Male , Ovum/ultrastructure , Phylogeny , Species Specificity
3.
J Med Virol ; 82(1): 175-85, 2010 Jan.
Article in English | MEDLINE | ID: mdl-19950229

ABSTRACT

Nucleotide sequences of two regions of the genomes of 11 yellow fever virus (YFV) samples isolated from monkeys or humans with symptomatic yellow fever (YF) in Brazil in 2000, 2004, and 2008 were determined with the objective of establishing the genotypes and studying the genetic variation. Results of the Bayesian phylogenetic analysis showed that sequences generated from strains from 2004 and 2008 formed a new subclade within the clade 1 of the South American genotype I. The new subgroup is here designated as 1E. Sequences of YFV strains recovered in 2000 belong to the subclade 1D, which comprises previously characterized YFV strains from Brazil. Molecular dating analyses suggested that the new subclade 1E started diversifying from 1D about 1975 and that the most recent 2004-2008 isolates arose about 1985.


Subject(s)
Genetic Variation , Monkey Diseases/epidemiology , Phylogeny , Yellow Fever/epidemiology , Yellow fever virus , 3' Untranslated Regions/genetics , Animals , Bayes Theorem , Brazil/epidemiology , Evolution, Molecular , Genotype , Humans , Molecular Sequence Data , Monkey Diseases/virology , Sequence Analysis, DNA , South America , Viral Envelope Proteins , Yellow Fever/veterinary , Yellow Fever/virology , Yellow fever virus/classification , Yellow fever virus/genetics , Yellow fever virus/isolation & purification
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