Key result
Direct exposure to wild boar infected with the attenuated ASFV Lv17/WB/Rie1 isolate resulted in transmission to only 1 of 5 (20%) susceptible domestic pigs, indicating a low transmission risk.
Why the study?
Knowledge regarding the transmission patterns of different African swine fever virus isolates at the wildlife-livestock interface remains limited.
The attenuated ASFV Lv17/WB/Rie1 isolate has a low risk of transmission from wild boar to domestic pigs via direct contact, supporting its potential safety profile.
Transmission patterns of ASFV isolates remain incompletely characterized; leaves open opportunities for refined epidemiological models in affected regions.
African swine fever (ASF) is a lethal infectious disease that affects domestic and wild pigs. This complex virus has already affected five continents and more than 70 countries and is considered to be the main threat to the global swine industry. The disease can potentially be transmitted directly through contact with infectious animals, or indirectly by means of contaminated feed or environments. Nevertheless, the knowledge regarding the transmission patterns of different ASF virus isolates at the wildlife-livestock interface is still limited. We have, therefore, assessed the potential transmission of an attenuated ASF virus isolate between infectious wild boar and directly exposed domestic pig. We registered 3,369 interspecific interactions between animals, which were brief and mostly initiated by wild boar. The major patterns observed during the study were head-to-head contact owing to sniffing, thus suggesting a high probability of pathogen transmission. However, only one of the five domestic pigs had a short period of viremia and became serologically positive for ASF virus antibodies. It was additionally discovered that the wild boar did not transmit the virulent virus isolate to the domestic pigs, which suggests that the presence of attenuated ASF virus isolates in affected areas may control the spreading of other more virulent isolates. These outcomes may help make decisions related to large-scale targeted management actions against ASF in field conditions.
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Kosowska et al. (2023) studied African swine fever virus (ASFV) infection (n=10). Attenuated ASFV Lv17/WB/Rie1 isolate was evaluated on Transmission of attenuated ASFV from infected wild boar to susceptible domestic pigs (viremia and seroconversion). Direct exposure to wild boar infected with the attenuated ASFV Lv17/WB/Rie1 isolate resulted in transmission to only 1 of 5 (20%) susceptible domestic pigs, indicating a low transmission risk.
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