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1.
Acta Trop ; 254: 107198, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38531427

ABSTRACT

Bovine viral diarrhea virus (BVDV) infection has a significant economic impact on beef and dairy industries worldwide. Fetal infection with a non-cytopathic strain may lead to the birth of persistently infected (PI) offspring, which is the main event in the epidemiological chain of BVDV infection. This report describes the birth of 99 BVDV-PI heifer calves within 52 days of birth in a regular BVDV-vaccinated Brazilian dairy cattle herd and the subgenotypes of the infecting field strains. This study was conducted in a high-yielding open dairy cattle herd that frequently acquired heifers from neighboring areas for replacement. The farm monitors the birth of PI calves by screening all calves born using an ELISA (IDEXX) for BVDV antigen detection. All calves aged 1-7 days were evaluated. For positive and suspected results, the ELISA was repeated when the calves were close to one month old. A total of 294 heifer calves were evaluated between February and March 2021. Of these, 99 (33.7 %) had positive ELISA results and were considered PI calves. To evaluate the predominant BVDV species and subgenotypes in this outbreak, whole blood samples were collected from 31 calves born during the study period. All samples were submitted to the RT-PCR assay for the partial amplification of the BVDV 5'-UTR region, and these amplicons were subjected to nucleotide sequencing. Phylogenetic analysis identified BVDV-1b and BVDV-1d in 16 and 13 heifer calves, respectively. In two calves, it was not possible to determine the BVDV-1 subgenotype. Detection of PI animals and monitoring of circulating BVDV subgenotype strains are central to disease control. This study shows that regular BVDV vaccination alone may be insufficient to prevent BVDV infection in high-yielding open dairy cattle herds. Other biosecurity measures must be adopted to avoid the purchase of cattle with acute infections by BVDV or BVDV-PI, which can cause a break in the health profile of the herd and economic losses.


Subject(s)
Bovine Virus Diarrhea-Mucosal Disease , Diarrhea Virus 1, Bovine Viral , Diarrhea Viruses, Bovine Viral , Disease Outbreaks , Phylogeny , Animals , Cattle , Bovine Virus Diarrhea-Mucosal Disease/virology , Bovine Virus Diarrhea-Mucosal Disease/epidemiology , Bovine Virus Diarrhea-Mucosal Disease/prevention & control , Disease Outbreaks/veterinary , Female , Diarrhea Virus 1, Bovine Viral/genetics , Diarrhea Virus 1, Bovine Viral/classification , Diarrhea Virus 1, Bovine Viral/isolation & purification , Diarrhea Virus 1, Bovine Viral/immunology , Brazil/epidemiology , Diarrhea Viruses, Bovine Viral/genetics , Diarrhea Viruses, Bovine Viral/classification , Diarrhea Viruses, Bovine Viral/isolation & purification , Diarrhea Viruses, Bovine Viral/immunology , Genotype , Viral Vaccines/immunology , Enzyme-Linked Immunosorbent Assay , Dairying , Vaccination/veterinary , Antibodies, Viral/blood
2.
J Vet Diagn Invest ; 36(1): 115-119, 2024 Jan.
Article in English | MEDLINE | ID: mdl-37908042

ABSTRACT

We characterized bovine viral diarrhea virus (BVDV)-related abortions in cattle and identified the species and subgenotypes in the state of Santa Catarina, southern Brazil. Our RT-PCR assay was positive for BVDV in 5 fetuses from different farms; however, 3 of the 5 fetuses were also PCR-positive for Neospora caninum. In the 5 BVDV-positive fetuses, gross lesions included fetal mummification (1), hepatomegaly (1), subcutaneous edema (1), and perirenal edema (1). Predominant histologic lesions included epicarditis and mild-to-moderate lymphoplasmacytic myocarditis (5), mild multifocal lymphoplasmacytic interlobular pneumonia (4), nephrosis associated with moderate multifocal interstitial nephritis (1), moderate multifocal lymphoplasmacytic necrotic hepatitis (1), and mild multifocal lymphoplasmacytic meningitis (1). The amplification products from the Pestivirus 5'UTR region of 4 of the 5 fetuses had 96.3-100% similarity between fetal strains and reference strains. The samples were distributed into 2 branches of the phylogenetic tree; strains UDESC:01, UDESC:02, and UDESC:05 clustered in the BVDV-1e branch, uncommon in the Americas, and strain UDESC:04 clustered in the BVDV-2b branch. The three 1e strains had 96.9-97.4% similarity.


Subject(s)
Bovine Virus Diarrhea-Mucosal Disease , Cattle Diseases , Diarrhea Virus 1, Bovine Viral , Diarrhea Virus 2, Bovine Viral , Diarrhea Viruses, Bovine Viral , Pregnancy , Female , Cattle , Animals , Diarrhea Virus 1, Bovine Viral/genetics , Bovine Virus Diarrhea-Mucosal Disease/epidemiology , Brazil/epidemiology , Phylogeny , Diarrhea Virus 2, Bovine Viral/genetics , Diarrhea Viruses, Bovine Viral/genetics , Diarrhea/veterinary , Edema/veterinary , Cattle Diseases/epidemiology
3.
Virology ; 590: 109968, 2024 02.
Article in English | MEDLINE | ID: mdl-38141499

ABSTRACT

Bovine viral diarrhea virus (BVDV) is known to cause financial losses and decreased productivity in the cattle industry worldwide. Currently, there are no available antiviral treatments for effectively controlling BVDV infections in laboratories or farms. The BVDV envelope protein (E2) mediates receptor recognition on the cell surface and is required for fusion of virus and cell membranes after the endocytic uptake of the virus during the entry process. Therefore, E2 is an attractive target for the development of antiviral strategies. To identify BVDV antivirals targeting E2 function, we defined a binding site in silico located in domain IIIc at the interface between monomers in the disulfide linked dimer of E2. Employing a de novo design methodology to identify compounds with the potential to inhibit the E2 function, compound 9 emerged as a promising candidate with remarkable antiviral activity and minimal toxicity. In line with targeting of E2 function, compound 9 was found to block the virus entry into host cells. Furthermore, we demonstrated that compound 9 selectively binds to recombinant E2 in vitro. Molecular dynamics simulations (MD) allowed describing a possible interaction pattern between compound 9 and E2 and indicated that the S enantiomer of compound 9 may be responsible for the antiviral activity. Future research endeavors will focus on synthesizing enantiomerically pure compounds to further support these findings. These results highlight the usefulness of de novo design strategies to identify a novel class of BVDV inhibitors that block E2 function inhibiting virus entry into the host cell.


Subject(s)
Diarrhea Virus 1, Bovine Viral , Diarrhea Viruses, Bovine Viral , Animals , Cattle , Viral Envelope Proteins/metabolism , Diarrhea Viruses, Bovine Viral/genetics , Diarrhea Virus 1, Bovine Viral/metabolism , Antiviral Agents/pharmacology
4.
Virol J ; 20(1): 205, 2023 09 07.
Article in English | MEDLINE | ID: mdl-37679808

ABSTRACT

Bovine viral diarrhea virus (BVDV) affects cattle worldwide causing severe productive and economic loss. In this study, we investigated the subgenotypes of BVDV circulating in cattle samples from the Aysén region, an active cattle breeding area located in southern Chile. Partial amplification of the 5' untranslated region (UTR) was performed by polymerase chain reaction (PCR), and twelve samples were analyzed by Sanger sequencing and phylogenetic analysis. Eight samples were identified as belonging to Pestivirus bovis subgenotype 1e, three to 1-b, and one to 1-d. The phylogenetic analyses performed revealed a marked distance between these now-identified strains and those previously reported in the country. These findings support the need to continually expand the analysis of the variability of the viral phylogeny for the currently circulating BVDV strains and to update the vaccines recommended for this livestock area and surrounding areas.


Subject(s)
Diarrhea Viruses, Bovine Viral , Animals , Cattle , Chile/epidemiology , Phylogeny , Diarrhea Viruses, Bovine Viral/genetics , 5' Untranslated Regions , Diarrhea
5.
Virus Genes ; 59(6): 836-844, 2023 Dec.
Article in English | MEDLINE | ID: mdl-37589803

ABSTRACT

Whole-genome phylogenetic analysis, the most suitable strategy for subtyping bovine viral diarrhea virus 1 (BVDV-1) and BVDV-2, is not feasible for many laboratories. Consequently, BVDV isolates/strains have been frequently subtyped based on analysis of single genomic regions, mainly the 5' untranslated region (UTR). This approach, however, may lead to inaccurate and/or poorly statistically supported viral classification. Herein, we describe novel primer sets whose amplicons may be easily sequenced and used for BVDV subtyping. Initially, genomic regions previously described as the most suitable targets for BVDV subtyping were analyzed for design of high-coverage primers. The putative amplicons were analyzed in silico for their suitability to reproduce the phylogenetic classification of 118 BVDV-1 and 88 BVDV-2 complete/near-complete genomes (CNCGs) (GenBank). This analysis was also performed considering the region amplifiable by primers HCV90-368, 324-326 and BP189-389 (5'UTR), which have been used for BVDV diagnosis and/or classification. After confirming the agreement between the analyses of our primers' amplicon versus the CNCGs, we optimized the RT-PCRs and evaluated their performance for amplification of BVDV isolates/strains (n = 35 for BVDV-1; n = 33 for BVDV-2). Among the potential targets for BVDV subtyping, we designed high-coverage primers for NS3-NS4A (BVDV-1) (526 bp amplicon) and NS5B (BVDV-2) (728 bp). The classification based on these regions fully reproduced the subtyping of all CNCGs. On the other hand, subtyping based on the putative amplicons from primers HCV90-368, 324-326 and BP189-389 showed disagreements in relation the CNCG analysis. The NS3-NS4A and NS5B primers also allowed the amplification of all BVDV isolates/strains tested. Finally, we suggest the use of these primers in future phylogenetic and epidemiological studies of BVDVs.


Subject(s)
Bovine Virus Diarrhea-Mucosal Disease , Diarrhea Virus 1, Bovine Viral , Diarrhea Virus 2, Bovine Viral , Diarrhea Viruses, Bovine Viral , Animals , Cattle , Diarrhea Virus 1, Bovine Viral/genetics , Diarrhea Virus 2, Bovine Viral/genetics , Phylogeny , Genomics , 5' Untranslated Regions/genetics , Diarrhea Viruses, Bovine Viral/genetics
6.
Braz J Microbiol ; 54(3): 2461-2469, 2023 Sep.
Article in English | MEDLINE | ID: mdl-37217730

ABSTRACT

Bovine viral diarrhea virus (BVDV) genome consists of a single-stranded, positive-sense RNA with high genetic diversity. In the last years, significant progress has been achieved in BVDV knowledge evolution through phylodynamic analysis based on the partial 5'UTR sequences, whereas a few studies have used other genes or the complete coding sequence (CDS). However, no research has evaluated and compared BVDV evolutionary history based on the complete genome (CG), CDS, and individual genes. In this study, phylodynamic analyses were carried out with BVDV-1 (Pestivirus A) and BVDV-2 (Pestivirus B) CG sequences available on the GenBank database and each genomic region: CDS, UTRs, and individual genes. In comparison to the CG, the estimations for both BVDV species varied according to the dataset used, pointing out the importance of considering the analyzed genomic region when concluding. This study may provide new insight into BVDV evolution history while highlighting the need to increase the available BVDV CG sequences to perform more comprehensive phylodynamic studies in the future.


Subject(s)
Bovine Virus Diarrhea-Mucosal Disease , Diarrhea Viruses, Bovine Viral , Animals , Cattle , Genotype , Diarrhea Viruses, Bovine Viral/genetics , Genomics , Phylogeny , Evolution, Molecular , Diarrhea , Genome, Viral
7.
An Acad Bras Cienc ; 95(1): e20220309, 2023.
Article in English | MEDLINE | ID: mdl-37132748

ABSTRACT

Pestivirus can contaminate cell cultures and sera and cause serious problems that evolve the integrity of studies, confidence in diagnostic results, and safety of human and animal vaccines. Contaminations by Pestivirus and other viruses may occur at any time and regular assays of monitoring in cell cultures and your supplies are necessary. This study aimed to analyze the phylogeny of Pestivirus detected from cell cultures, calf serum, and standard strains of three laboratories in Brazil that carry out frequent tests for the monitoring of cellular contaminations. These samples were submitted to phylogenetic analysis to understand the genetic relationship between contaminants occurring in these facilities. As result, the Pestivirus found in samples were Bovine viral diarrhea virus (BVDV-1 and BVDV-2), Hobi-like viruses (often named BVDV-3), and Classical swine fever virus (CSFV), and the phylogenetic analysis help us to infer at three possible routes of contamination in this work.


Subject(s)
Diarrhea Virus 1, Bovine Viral , Diarrhea Viruses, Bovine Viral , Pestivirus , Animals , Swine , Humans , Pestivirus/genetics , Phylogeny , Diarrhea Viruses, Bovine Viral/genetics , Diarrhea Virus 1, Bovine Viral/genetics , Cell Line
8.
Viruses ; 15(2)2023 02 06.
Article in English | MEDLINE | ID: mdl-36851667

ABSTRACT

Pestiviruses are globally distributed and cause substantial economic losses to the cattle industry. In Brazil, the country with the world's largest cattle population, pestivirus infections are well described in some regions, such as in the south, where a high frequency of BVDV-2 is described and contrasts with the high prevalence of HoBi-like pestivirus (HoBiPeV) in the northeast. However, there is a lack of information about pestiviruses in the Amazon Region, in northern Brazil, with a cattle population estimated at 55.7 million head, which has a significant impact on the international livestock market. Therefore, this study investigated the seroprevalence and genetic variability of ruminant pestiviruses in 944 bovine serum samples from four states in northern Brazil: Pará (PA), Amapá (AP), Roraima (RR), and Amazonas (AM). Our results showed that 45.4% of the samples were seropositive (19.8% for BVDV-1, 14.1% for BVDV-2, and 20.9% for HoBiPeV). All samples were tested by RT-qPCR, and three were positive and classified as HoBiPeV in a phylogenetic analysis. These serological and molecular results contrast with those from other regions of the world, suggesting that the northern Brazilian states have a high prevalence of all bovine pestiviruses including HoBiPeV.


Subject(s)
Diarrhea Virus 2, Bovine Viral , Diarrhea Viruses, Bovine Viral , Pestivirus , Animals , Cattle , Pestivirus/genetics , Brazil/epidemiology , Phylogeny , Seroepidemiologic Studies , Diarrhea Viruses, Bovine Viral/genetics , Diarrhea Virus 2, Bovine Viral/genetics
9.
Rev Argent Microbiol ; 55(2): 167-175, 2023.
Article in English | MEDLINE | ID: mdl-36658065

ABSTRACT

Bovine pestiviruses are the causative agents of bovine viral diarrhea, a disease that causes severe economic losses in cattle. The aim of this study was to improve their diagnosis by developing a RT-qPCR to detect bovine pestiviruses A, B and H; and to set up a protocol for collecting, shipping and preserving bovine pestiviral RNA on filter papers. The developed RT-qPCR showed high sensitivity in detecting these viruses in different matrices: viral stocks, semen and serum samples. With regard to the possibility of using the technique to test serum pools, it was possible to identify a positive serum sample within a pool containing 30 sera. In addition to evaluating the qPCR from fresh samples, the use of filter papers to sow bovine samples was analyzed. The sampling method on two different filter papers using bovine blood drops was a useful alternative for diagnostic purposes and allowed to preserve pestiviral RNA for up to 12 months under refrigeration.


Subject(s)
Diarrhea Viruses, Bovine Viral , Pestivirus Infections , Animals , Cattle , RNA, Viral/genetics , Cost-Benefit Analysis , Pestivirus Infections/diagnosis , Pestivirus Infections/veterinary , Diarrhea Viruses, Bovine Viral/genetics
10.
Arch Virol ; 167(12): 2545-2553, 2022 Dec.
Article in English | MEDLINE | ID: mdl-36104508

ABSTRACT

Bovine pestiviruses are members of the species Pestivirus A (bovine viral diarrhea virus 1, BVDV-1), Pestivirus B (BVDV-2) or Pestivirus H (HoBiPeV). To date, BVDV-2 isolates/strains have been classified into three subtypes (a-c) by phylogenetic analysis, and an additional subtype (d) has been proposed based on 5' untranslated region (UTR) secondary structures. In a previous study, we identified some BVDV-2 sequences in the GenBank database that could not be classified as subtype a, b or c by phylogenetic analysis of their genomes, UTRs or individual genes. Here, we performed a detailed study of these sequences and assessed whether they might represent a distinct BVDV-2 subtype. Initially, we collected 85 BVDV-2 complete/near-complete genomes (CNCGs) from GenBank and performed a "proof of equivalence" between phylogenetic analyses based on CNCGs and open reading frames (ORFs), which showed that ORFs may be reliably used as a reference target for BVDV-2 phylogeny, allowing us to increase our dataset to 139 sequences. Among these, we found seven sequences that could not be classified as BVDV-2a-c. The same was observed in the phylogenetic analysis of CNCGs and viral genes. In addition, the seven non-BVDV-2a-c sequences formed a distinct cluster in all phylogenetic trees, which we propose to term BVDV-2e. BVDV-2e also showed 44 amino acid changes compared to BVDV-2a-c, 20 of which are in well-defined positions. Importantly, an additional phylogenetic analysis including BVDV-2d and a pairwise comparison of BVDV-2e and BVDV-2d sequences also supported the difference between these subtypes. Finally, we propose the recognition of BVDV-2e as a distinct BVDV-2 subtype and encourage its inclusion in future phylogenetic analyses to understand its distribution and evolution.


Subject(s)
Bovine Virus Diarrhea-Mucosal Disease , Diarrhea Virus 1, Bovine Viral , Diarrhea Virus 2, Bovine Viral , Diarrhea Viruses, Bovine Viral , Pestivirus , Animals , Cattle , Diarrhea Virus 2, Bovine Viral/genetics , Phylogeny , Diarrhea Virus 1, Bovine Viral/genetics , Diarrhea Viruses, Bovine Viral/genetics , Pestivirus/genetics , 5' Untranslated Regions/genetics
11.
Braz J Microbiol ; 53(3): 1675-1682, 2022 Sep.
Article in English | MEDLINE | ID: mdl-35349125

ABSTRACT

In this study, phylogenetic and evolutionary analyses of cattle pestiviruses (BVDV-1, 2 and HoBiPeV) originating in Brazil were used to investigate the temporal diversification of subgenotypes in the country. Inferred dated phylogeny and time of the most recent common ancestor (tMRCA) demonstrated that some BVDV subgenotypes (1a, 1b, 1d, 1e, and 2b) and HoBi-like sequences clustered according to the region in which they were collected and that the diversification of subgenotypes appears to have occurred around the introduction of first Bos taurus and then Bos indicus, followed by expansion to form the adapted Brazilian breeds. The present results help to elucidate the temporal facts that led to diversification of ruminant pestiviruses in cattle in Brazil.


Subject(s)
Diarrhea Virus 1, Bovine Viral , Diarrhea Viruses, Bovine Viral , Pestivirus , Animals , Brazil , Cattle , Diarrhea Virus 1, Bovine Viral/genetics , Diarrhea Viruses, Bovine Viral/genetics , Pestivirus/genetics , Phylogeny , Ruminants
12.
Infect Genet Evol ; 96: 105089, 2021 12.
Article in English | MEDLINE | ID: mdl-34563649

ABSTRACT

Bovine viral diarrhea virus (BVDV) is an important pathogen of ruminants worldwide and is characterized by high genetic diversity and a wide range of clinical presentations. In Argentina, several studies have evaluated the genetic diversity of BVDV but no phylodynamic study has been published yet. In this study, a comprehensive compilation and update of Argentinean BVDV sequences were performed, and the evolutionary history of BVDV was characterized by phylodynamic analyses based on the 5´UTR. Although BVDV-1b and BVDV-1a were the most frequent subtypes, novel subtypes for Argentina, 1e and 1i, were identified. The phylodynamic analysis suggested that BVDV started its diversification in the mid-1650s with an exponential increase in viral diversity since the late 1990s, possibly related to the livestock expansion and intensification in the country. Evolutionary rate in the 5´UTR was faster for BVDV-1a than for BVDV-1b, and both subtypes presented an endemic nature according to the demographic reconstructions. The current study contributes to clarify the evolutionary history of BVDV in the main cattle region of the country and provides useful information about the epidemiology and future development of diagnostic and control tools in Argentina.


Subject(s)
Bovine Virus Diarrhea-Mucosal Disease/epidemiology , Diarrhea Viruses, Bovine Viral/genetics , Genetic Variation , Genome, Viral , Animals , Argentina/epidemiology , Bovine Virus Diarrhea-Mucosal Disease/virology , Cattle , Diarrhea Virus 1, Bovine Viral/genetics , Diarrhea Virus 2, Bovine Viral/genetics , Phylogeny
13.
Viruses ; 13(6)2021 06 17.
Article in English | MEDLINE | ID: mdl-34204224

ABSTRACT

Pestivirus envelope protein E2 is crucial to virus infection and accomplishes virus-receptor interaction during entry. However, mapping of E2 residues mediating these interactions has remained unexplored. In this study, to investigate the structure-function relationship for a ß-hairpin motif exposed to the solvent in the crystal structure of bovine viral diarrhea virus (BVDV) E2, we designed two amino acidic substitutions that result in a change of electrostatic potential. First, using wild type and mutant E2 expressed as soluble recombinant proteins, we found that the mutant protein had reduced binding to susceptible cells compared to wild type and diminished ability to inhibit BVDV infection, suggesting a lower affinity for BVDV receptors. We then analyzed the effect of ß-hairpin mutations in the context of recombinant viral particles. Mutant viruses recovered from cell culture supernatant after transfection of recombinant RNA had almost completely inhibited ability to re-infect susceptible cells, indicating an impact of mutations on BVDV infectivity. Finally, sequential passaging of the mutant virus resulted in the selection of a viral population in which ß-hairpin mutations reverted to the wild type sequence to restore infectivity. Taken together, our results show that this conserved region of the E2 protein is critical for the interaction with host cell receptors.


Subject(s)
Diarrhea Viruses, Bovine Viral/genetics , Diarrhea Viruses, Bovine Viral/metabolism , Receptors, Virus/metabolism , Viral Envelope Proteins/chemistry , Viral Envelope Proteins/metabolism , Virus Internalization , Amino Acid Substitution , Animals , Cattle , Cell Line , Diarrhea Viruses, Bovine Viral/chemistry , Inverted Repeat Sequences/physiology , Protein Binding , Viral Envelope Proteins/genetics
14.
J Vet Diagn Invest ; 33(5): 966-968, 2021 Sep.
Article in English | MEDLINE | ID: mdl-34078202

ABSTRACT

We describe the molecular analysis of a wild-type field strain of bovine viral diarrhea virus (BVDV) identified in a mummified fetus from a small Brazilian dairy cattle herd. Nucleic acids extracted from samples of the lung, liver, heart, spleen, and kidney were tested by PCR assays for bovine alphaherpesvirus 1, Neospora caninum, Leptospira spp., Histophilus somni, and Brucella abortus, a nested PCR assay for Mycoplasma bovigenitalium and Ureaplasma diversum, and a RT-PCR assay for BVDV. Amplicons were only obtained in the RT-PCR assay for the partial amplification of the BVDV 5'UTR (288 bp) in kidney and spleen samples and the Npro (438 bp) gene in the kidney sample. Nucleotide sequencing of the amplified products and phylogenetic analyses based on the 2 BVDV genomic regions enabled the BVDV strain to be classified as subgenotype 1a.


Subject(s)
Bovine Virus Diarrhea-Mucosal Disease , Cattle Diseases , Diarrhea Virus 1, Bovine Viral , Diarrhea Viruses, Bovine Viral , Animals , Cattle , Diarrhea/veterinary , Diarrhea Virus 1, Bovine Viral/genetics , Diarrhea Viruses, Bovine Viral/genetics , Fetus , Phylogeny , Ureaplasma
15.
Arch Virol ; 166(4): 1163-1170, 2021 Apr.
Article in English | MEDLINE | ID: mdl-33554289

ABSTRACT

The envelope glycoprotein E2 of pestiviruses is a major target for neutralizing antibodies. In this study, we analyzed the E2 DA domain of 43 pestiviruses from Southern Brazil. The isolates were identified as Bovine viral diarrhea virus (BVDV) subtypes 1a and 1b or BVDV-2b. Compared to reference strains, the BVDV-1 and -2 isolates had four and two mutations in the DA domain, respectively. All BVDV-2 isolates had a deletion of residues 724 and 725. All mutated amino acids in the BVDV isolates had the same aa substitution, and all were in previously identified antibody binding sites. It is possible that an immunity-mediated selection is acting on the pestiviruses circulating in Southern Brazil.


Subject(s)
Diarrhea Viruses, Bovine Viral/genetics , Diarrhea Viruses, Bovine Viral/isolation & purification , Viral Envelope Proteins/genetics , Animals , Antigens, Viral/genetics , Binding Sites, Antibody/genetics , Bovine Virus Diarrhea-Mucosal Disease/epidemiology , Bovine Virus Diarrhea-Mucosal Disease/virology , Brazil/epidemiology , Cattle , Diarrhea Viruses, Bovine Viral/classification , Diarrhea Viruses, Bovine Viral/immunology , Mutation , Phylogeny , RNA, Viral/genetics , Viral Envelope Proteins/immunology
16.
Braz J Microbiol ; 52(1): 467-475, 2021 Mar.
Article in English | MEDLINE | ID: mdl-33237499

ABSTRACT

Bovine viral diarrhea (BVD) is a major worldwide disease with negative economic impact on cattle production. Successful control programs of BVD require the identification and culling of persistently infected (PI) animals with bovine viral diarrhea virus (BVDV). A variety of diagnostic tests are available to detect BVDV, but no comparison has been performed among those tests in Argentina. Sera collected from 2864 cattle, belonging to 55 herds from three Argentinean provinces, were analyzed by nested RT-PCR (RT-nPCR) to detect BVDV for diagnostic purposes. Additionally, this study evaluated the agreement of the RT-nPCR along with virus isolation, antigen-capture ELISA, and real-time RT-PCR for BVDV detection in archived bovine serum samples (n = 90). The RT-nPCR was useful for BVDV detection in pooled and individual serum samples. BVDV was detected in 1% (29/2864) of the cattle and in 20% (11/55) of the herds. The proportion of BVDV-positive sera was not statistically different among the tests. In addition, comparisons showed high agreement levels, with the highest values between both RT-PCR protocols. The frequency of BVDV infection at individual and herd level was lower than the reported values worldwide. Since follow-up testing was not performed, the frequency of PI cattle was unknown. Also, this study demonstrated that the four diagnostic tests can be used reliably for BVDV identification in individual serum samples. Further epidemiologically designed studies that address prevalence, risk factors, and economic impact of BVDV in Argentina will be necessary to implement effective control programs.


Subject(s)
Bovine Virus Diarrhea-Mucosal Disease/blood , Bovine Virus Diarrhea-Mucosal Disease/diagnosis , Diarrhea Viruses, Bovine Viral/immunology , Molecular Diagnostic Techniques/standards , Molecular Diagnostic Techniques/veterinary , Serologic Tests/standards , Serologic Tests/veterinary , Animals , Argentina , Cattle , Diarrhea Viruses, Bovine Viral/genetics , Diarrhea Viruses, Bovine Viral/isolation & purification , Limit of Detection , Molecular Diagnostic Techniques/methods , Serologic Tests/methods , Serum
17.
Comp Immunol Microbiol Infect Dis ; 71: 101494, 2020 Aug.
Article in English | MEDLINE | ID: mdl-32434101

ABSTRACT

The etiological agents involved in a bovine respiratory disease (BRD) outbreak were investigated in a dairy heifer calf rearing unit from southern Brazil. A battery of PCR assays was performed to detect the most common viruses and bacteria associated with BRD, such as bovine viral diarrhea virus (BVDV), bovine respiratory syncytial virus (BRSV), bovine alphaherpesvirus 1 (BoHV-1), bovine coronavirus (BCoV), bovine parainfluenza virus 3 (BPIV-3), Mannheimia haemolytica, Pasteurella multocida, Histophilus somni, and Mycoplasma bovis. Bronchoalveolar lavage fluid (BALF) samples were taken from 21 heifer calves (symptomatic n = 15; asymptomatic n = 6) that, during the occurrence of the BDR outbreak, were aged between 6 and 90 days. At least one microorganism was detected in 85.7 % (18/21) of the BALF samples. Mixed infections were more frequent (72.2 %) than single infections (27.7 %). The interactions between viruses and bacteria were the most common in coinfections (55.5 %). The frequencies of BRD agents were 38.1 % for BRSV, 28.6 % for BVDV, 33.3 % for BCoV, 42.85 % for P. multocida, 33.3 % for M. bovis, and 19 % for H. somni. BoHV-1, BPIV-3, and M. haemolytica were not identified in any of the 21 BALF samples. Considering that BALF and not nasal swabs were analyzed, these results demonstrate the etiological multiplicity that may be involved in BRD outbreaks in dairy calves.


Subject(s)
Bronchoalveolar Lavage Fluid/microbiology , Cattle Diseases/microbiology , Disease Outbreaks/veterinary , Respiratory Tract Infections/epidemiology , Respiratory Tract Infections/microbiology , Animals , Brazil/epidemiology , Cattle , Cattle Diseases/epidemiology , Cattle Diseases/etiology , Coronavirus, Bovine/genetics , Coronavirus, Bovine/isolation & purification , Dairying , Diarrhea Viruses, Bovine Viral/genetics , Diarrhea Viruses, Bovine Viral/isolation & purification , Molecular Diagnostic Techniques/veterinary , Mycoplasma bovis/genetics , Mycoplasma bovis/isolation & purification , Pasteurella multocida/genetics , Pasteurella multocida/isolation & purification , Pasteurellaceae/genetics , Pasteurellaceae/isolation & purification , Polymerase Chain Reaction , Respiratory Syncytial Virus, Bovine/genetics , Respiratory Syncytial Virus, Bovine/isolation & purification , Respiratory Tract Infections/etiology , Respiratory Tract Infections/veterinary
18.
Arch Virol ; 165(1): 145-156, 2020 Jan.
Article in English | MEDLINE | ID: mdl-31745717

ABSTRACT

Bovine viral diarrhea virus (BVDV) is a major pathogen worldwide, causing significant economic losses to the livestock sector. In Uruguay, BVDV seroprevalence at the farm level is >80%. In this work, 2546 serum, blood or tissue samples collected from animals suspected of being affected by BVD between 2015 and 2017 were analyzed by reverse transcription PCR and sequencing. Analysis of the BVDV genomic regions 5'UTR/Npro, Npro and E2 revealed that BVDV-1a, 1i and 2b circulate in the country, with BVDV-1a being the most prevalent subtype. Population dynamics studies revealed that BVDV-1a has been circulating in our herds since ~1990. This subtype began to spread and evolve, accumulating point mutations at a rate of 3.48 × 10-3 substitutions/site/year, acquiring specific genetic characteristics that gave rise to two local genetic lineages of BVDV-1a. These lineages are divergent from those circulating worldwide, as well as the vaccine strain currently used in Uruguay. The most notable differences between field and vaccine strains were found in the E2 glycoprotein, suggesting that the amino acid substitutions could result in failure of cross-protection/neutralization after vaccination. This is the first study that compares Uruguayan BVDV field and vaccine strains with other BVDV strains from throughout the world. The results obtained in this study will be very useful for developing a suitable immunization program for BVDV in Uruguay by identifying local field strains as candidates for vaccine development.


Subject(s)
Diarrhea Viruses, Bovine Viral/classification , Point Mutation , Sequence Analysis, RNA/methods , Amino Acid Substitution , Animals , Cattle , Diarrhea Viruses, Bovine Viral/genetics , Diarrhea Viruses, Bovine Viral/immunology , Evolution, Molecular , Phylogeny , Seroepidemiologic Studies , Uruguay , Viral Envelope Proteins/genetics , Viral Envelope Proteins/immunology , Viral Vaccines/immunology
19.
Braz J Microbiol ; 50(1): 271-277, 2019 Jan.
Article in English | MEDLINE | ID: mdl-30637633

ABSTRACT

Dermatitis might occur in mucosal disease (MD) caused by bovine viral diarrhea virus (BVDV). This study describes the pathological and virological features of skin lesions associated with BVDV infection in four persistently infected (PI) cattle. Skin samples were reprocessed for histopathology and IHC. BVDV isolates were obtained and were genetically characterized. In addition to upper alimentary system ulcerative lesions, all cattle (one outbreak and three individual cases) presented focal crusty and ulcerative lesions affecting the mucocutaneous and skin-horn junctions, interdigital clefts, pastern, and areas surrounding the dewclaws and diffuse thickened skin within 7-20 days of infection. Microscopic analysis revealed parakeratotic hyperkeratosis and single-cell keratinocyte death, accompanied by ballooning degeneration and spongiosis in the epidermis, as well as intraepithelial and subcorneal pustules. IHC showed BVDV antigen in the cytoplasm of keratinocytes undergoing individual cell death. Phylogenetic analysis revealed that the isolates from cattle #1, #2, and #4 belonged to BVDV-1a, whereas that from cattle #3 belonged to BVDV-1d. Cytopathic BVDV was isolated from cattle #2 and #3 (MD), and non-cytopathic BVDV was isolated from cattle #1 and #4. Thus, BVDV infection might cause acute disease, characterized by skin and upper alimentary system ulcerative lesions, in both MD and PI cattle.


Subject(s)
Bovine Virus Diarrhea-Mucosal Disease/virology , Diarrhea Viruses, Bovine Viral/isolation & purification , Skin Diseases/veterinary , Animals , Antibodies, Viral , Bovine Virus Diarrhea-Mucosal Disease/pathology , Cattle , Diarrhea Viruses, Bovine Viral/classification , Diarrhea Viruses, Bovine Viral/genetics , Diarrhea Viruses, Bovine Viral/physiology , Phylogeny , Skin/pathology , Skin/virology , Skin Diseases/pathology , Skin Diseases/virology
20.
Braz. j. microbiol ; Braz. j. microbiol;49(4): 785-789, Oct.-Dec. 2018. tab, graf
Article in English | LILACS | ID: biblio-974292

ABSTRACT

ABSTRACT Bovine viral diarrhea virus can cause acute disease in livestock, leading to economic losses. We show that Prostaglandin A1 inhibits bovine viral diarrhea virus replication in Madin-Darby bovine kidney cells (94% inhibition using 5 µg/mL). Light and electron microscopy of infected cells shows that Prostaglandin A1 also prevents virus-induced vacuolization, but at higher concentrations (10 µg/mL).


Subject(s)
Animals , Cattle , Antiviral Agents/pharmacology , Prostaglandins A/pharmacology , Bovine Virus Diarrhea-Mucosal Disease/virology , Diarrhea Viruses, Bovine Viral/drug effects , Antiviral Agents/analysis , Prostaglandins A/analysis , Virus Replication/drug effects , Bovine Virus Diarrhea-Mucosal Disease/drug therapy , Cell Line , Diarrhea Viruses, Bovine Viral/physiology , Diarrhea Viruses, Bovine Viral/genetics , Diarrhea
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