Key result
X69R gene deletion fails to alter African swine fever virus replication or virulence in swine.
Why the study?
The uncharacterized gene X69R is highly conserved in African swine fever virus, and its role in ASFV-G functionality, replication, and virulence was unknown.
Key points are not available for this paper at this time.
Population
Swine and primary swine macrophage cultures
Comparison
Recombinant ASFV-G-ΔX69R vs parental ASFV-G
Design
Experimental in vitro and in vivo animal study
X69R deletion fails to attenuate ASFV Georgia in swine; leaves open identification of critical genes for live-attenuated vaccines.
African swine fever virus (ASFV) is currently causing devastating outbreaks in Asia and Europe, and the ASFV strain Georgia (ASFV-G) is responsible for these outbreaks. ASFV-G is highly virulent and continues to be maintained in these outbreak areas, apparently without suffering significant genomic or phenotypic changes. When comparing the genome of ASFV-G to other isolates, a thus-far uncharacterized gene, X69R, is highly conserved and, interestingly, is similar to another ASFV uncharacterized gene, J64R. All sequenced ASFV isolates have one or both of these genes, X69R or J64R, suggesting that the presence of at least one of these genes may be necessary for ASFV replication and or virulence. The X69R gene is present in the ASFV-G genome while J64R is absent. To assess the importance of X69R in ASFV-G functionality, we developed a recombinant virus by deleting the X69R gene from the ASFV-G genome (ASFV-G-ΔX69R). ASFV-G-ΔX69R had the same replication kinetics in primary swine macrophage cultures as the parental ASFV-G, indicating that the X69R gene is not essential for ASFV-G viability or efficient replication in the main target cell during in vivo infection. In addition, swine intramuscularly inoculated with a low dose (102 HAD50) of ASFV-G-ΔX69R developed a clinical disease indistinguishable from that induced by the same dose of the virulent parental ASFV-G isolate. Viremia values of ASFV-G-ΔX69R did not significantly differ from those detected in animals infected with parental virus. Therefore, deletion of the X69R gene from ASFV-G does not affect virus replication or virulence in swine.
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Ramírez-Medina et al. (2020) studied this question. Deletion of the X69R gene from the African swine fever virus Georgia strain did not affect virus replication or virulence in swine compared to the parental isolate.
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