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Upregulation of interferon-alpha gene in bovine embryos produced in vitro in response to experimental infection with noncytophatic bovine-viral-diarrhea virus

Abstract
In-vitro fertilization is a routine livestock-breeding technique widely used around the world. Several studies have reported the interaction of bovine viral-diarrhea virus (BVDV) with gametes and in-vitro-produced (IVP) bovine embryos. Since, gene expression in BVDV-infected IVP bovine embryos is scarcely addressed. The aim of this work was to evaluate the differential expression of genes involved in immune and inflammatory response. Groups of 20–25 [ver mas...]
In-vitro fertilization is a routine livestock-breeding technique widely used around the world. Several studies have reported the interaction of bovine viral-diarrhea virus (BVDV) with gametes and in-vitro-produced (IVP) bovine embryos. Since, gene expression in BVDV-infected IVP bovine embryos is scarcely addressed. The aim of this work was to evaluate the differential expression of genes involved in immune and inflammatory response. Groups of 20–25 embryos on Day 6 (morula stage) were exposed (infected) or not (control) to an NCP-BVDV strain in SOF medium. After 24 h, embryos that reached expanded blastocyst stage were washed. Total RNA of each embryo group was extracted to determine the transcription levels of 9 specific transcripts related with antiviral and inflammatory response by SYBR Green real time quantitative (RT-qPCR). Culture media and an aliquot of the last embryos wash on Day 7 were analyzed by titration and virus isolation, respectively. A conventional PCR confirmed BVDV presence in IVP embryos. A significantly higher expression of interferon-α was observed in blastocysts exposed to NCP-BVDV compared to the controls (p < 0.05). In this study, the upregulation of INFα and TLR7 genes involved in inflammatory and immune response in BVDV-infected IVP bovine embryos is a new finding in this field. This differential expression suggest that embryonic cells could function in a manner like immune cells by recognizing and responding early to interaction with viral pathogens. These results provide new insights into the action of BVDV on the complex molecular pathways controlling bovine early embryonic development. [Cerrar]
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Author
González Altamiranda, Erika;   Arias, María E.;   Kaiser, German Gustavo;   Mucci, Nicolas Crescencio;   Odeon, Anselmo Carlos;   Felmer, Ricardo N.;  
Fuente
Molecular Biology Reports 47 : 9959–9965 (2020)
Date
2020-11
Editorial
Springer
ISSN
0301-4851
1573-4978
URI
http://hdl.handle.net/20.500.12123/11115
https://link.springer.com/article/10.1007%2Fs11033-020-05958-7
DOI
https://doi.org/10.1007/s11033-020-05958-7
Formato
pdf
Tipo de documento
artículo
Palabras Claves
Ganado Bovino; Cattle; Embriones Animales; Animal Embryos; Infección Experimental; Experimental Infection; Pestivirus de la Diarrea Bovina; Bovine Diarrhoa Pestivirus; Experimentación in Vitro; In Vitro Experimentation;
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Excepto donde se diga explicitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
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