No molecular evidence for influenza A virus and coronavirus in bats belonging to the families Phyllostomidae, Vespertilionidae, and Molossidae in the state of São Paulo, Brazil

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作者
Lina Violet-Lozano
Vanessa Haach
Camila Mosca Barboza
Juliana dos Santos
Bianca Ferreira Gomes
Tatiane de Cassia Pardo de Souza
Pedro Carnieli Junior
Clarice Weis Arns
Helena Beatriz de Carvalho Ruthner Batista
Paulo Michel Roehe
Ana Cláudia Franco
机构
[1] Federal University of Rio Grande Do Sul (UFRGS),Virology Laboratory, Department of Microbiology, Immunology and Parasitology, Institute of Basic Health Sciences
[2] Federal University of ABC,Animal Viruses Laboratory, Department of Genetics, Evolution and Bioagents, Institute of Biology
[3] Pasteur Institute,undefined
[4] University of Campinas (Unicamp),undefined
来源
关键词
Alphainfluenzavirus; RT-PCR; Chiropterans; RdRp; Spillover;
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暂无
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学科分类号
摘要
This study aimed to evaluate, by molecular methods, the presence of influenza A virus (IAV) and coronavirus in non-hematophagous bats collected in the state of São Paulo, Brazil. Samples of lung tissue and small intestine from 105 bats belonging to three families (Phyllostomidae, Vespertilionidae, and Molossidae) were collected in 22 municipalities in the state of São Paulo. Genetic identification of bats species was performed by amplification and sequencing of a fragment of 710 bp of the mitochondrial COI gene. In the detection of IAV, genomes were performed by RT-PCR, aiming at the amplification of a 245-bp fragment of the IAV matrix (M) protein gene. For coronaviruses, two fragments of 602 and 440 bp corresponding to segments along the gene encoding the RNA-dependent RNA polymerase (RdRp) were targeted. The detection limit for each of the PCRs was also determined. All samples analyzed here were negative for both viruses, and the lower limit of detection of the PCRs for the amplification of influenza virus A and coronavirus was estimated at 3.5 × 103 and 4.59 genomic copies per microliter, respectively. Although bats have been shown to harbor a large number of pathogens, the results of the present study support the theory that virus circulation in bats in the wild often occurs at low viral loads and that our understanding of the complex infectious dynamics of these viruses in wild conditions is still limited.
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页码:523 / 529
页数:6
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