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1.
Transbound Emerg Dis ; 67(6): 2946-2960, 2020 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-32506755

RESUMO

South Africa is endemic for lumpy skin disease and is therefore reliant on various live attenuated vaccines for the control and prevention of the disease. In recent years, widespread outbreaks of vaccine-like strains of lumpy skin disease virus (LSDV) were reported internationally, leading to an increase in the generation of full genome sequences from field isolates. In this study, the complete genomes of six LSDVs submitted during active outbreaks in the 1990s in South Africa were generated. Based on phylogenetic analysis, the six viruses clustered with vaccine strains in LSDV Subgroup 1.1 and are subsequently referred to as vaccine-associated. The genetic differences between the phenotypically distinct vaccine and vaccine-associated strains were 67 single nucleotide polymorphisms (SNPs). This study characterized the location and possible importance of each of these SNPs in their role during virulence and host specificity.


Assuntos
Doença Nodular Cutânea/virologia , Vírus da Doença Nodular Cutânea/genética , Vírus da Doença Nodular Cutânea/patogenicidade , Polimorfismo de Nucleotídeo Único , Vacinas Virais/imunologia , Animais , Bovinos , África do Sul , Virulência
2.
Transbound Emerg Dis ; 66(4): 1539-1547, 2019 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-30892826

RESUMO

Lumpy skin disease (LSD) is an important transboundary animal disease of cattle with significant economic impact because of the implications for international trade in live animals and animal products. LSD is caused by a Capripoxvirus, LSD virus (LSDV), and results in extensive hide and udder damage, fever and pneumonia. LSDV can be shed in semen of infected bulls for prolonged periods and transmitted venereally to cows at high doses. This study examined the effects of LSDV in frozen-thawed semen on in vitro embryo production parameters, including viral status of media and resulting embryos. Bovine oocytes were harvested from abattoir-collected ovaries and split into three experimental groups. After maturation, the oocytes were fertilized in vitro with frozen-thawed semen spiked with a high (HD) or a lower (LD) dose of LSDV, or with LSDV-free semen (control). Following day 7 and day 8 blastocyst evaluation, PCR and virus isolation were performed on all embryonic structures. After completing sufficient replicates to reach 1,000 inseminated oocytes, further in vitro fertilization (IVF) runs were performed to provide material for electron microscopy (EM) and embryo washing procedures. Overall, in vitro embryo yield was significantly reduced by the presence of LSDV in frozen-thawed semen, irrespective of viral dose. When semen with a lower viral dose was used, significantly lower oocyte cleavage rates were observed. LSDV could be detected in fertilization media and all embryo structures, when higher doses of LSDV were present in the frozen-thawed semen used for IVF. Electron microscopy demonstrated LSDV virions inside blastocysts. Following the International Embryo Transfer Society washing procedure resulted in embryos free of viral DNA; however, this may be attributable to a sampling dilution effect and should be interpreted with caution. Further research is required to better quantify the risk of LSDV transmission via assisted reproductive procedures.


Assuntos
Embrião de Mamíferos/virologia , Doença Nodular Cutânea/virologia , Vírus da Doença Nodular Cutânea/isolamento & purificação , Sêmen/virologia , Animais , Blastocisto/virologia , Bovinos , Criopreservação/veterinária , Meios de Cultura , Feminino , Fertilização in vitro/veterinária , Masculino , Carga Viral/veterinária
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