4.6 Article

Adaptation of Two Wild Bird-Origin H3N8 Avian Influenza Viruses to Mammalian Hosts

Journal

VIRUSES-BASEL
Volume 14, Issue 5, Pages -

Publisher

MDPI
DOI: 10.3390/v14051097

Keywords

PA; PB2; mutation; cross-species transmission; mammal adaptability

Categories

Funding

  1. Guangdong Provincial Special Fund for Modern Agriculture Industry Technology Innovation Teams [2022KJ119]
  2. National Natural Science Foundation of China [31872492, 32060811]

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This study investigated the transmission and pathogenicity of two H3N8 low pathogenic avian influenza viruses (LPAIVs) isolated from wild birds to mammals. Both strains were able to infect chickens, mice, and guinea pigs, and adapted strains showed enhanced pathogenicity in mice. The findings provide important scientific basis for monitoring wild avian influenza viruses and understanding the mechanism of cross-species transmission.
Wild birds play an important role in the emergence, evolution, and spread of zoonotic avian influenza viruses (AIVs). However, there are few studies on the cross-species transmission of the H3N8 AIV originating from wild birds. In this study, we investigated the transmissibility and pathogenicity of two H3N8 low pathogenic avian influenza viruses (LPAIVs) isolated from wild birds, GZA1 and XJ47, to mammals. The HA genes of both strains belonged to Eurasian isolates, while the other genes were derived from a variety of other subtypes of AIVs. Both strains can infect specific-pathogen-free (SPF) chickens, BALB/c mice, and guinea pigs. The XJ47 strain spread horizontally in SPF chickens and guinea pigs. The GZA1 strain did not spread horizontally but caused higher weight loss and mild lung inflammation in mice. P12-GZA1- and P12-XJ47-adapted strains obtained after 12 passages in the lung of mice showed enhanced pathogenicity in mice, which led to obvious clinical symptoms, lung inflammation, and 100% death. Both adapted strains have the reported mutation T97I in the PA, and the reported mutation D701N in PB2 has been found in the P12-GZA1-adapted strain. This study provides an important scientific basis for the continuous monitoring of wild AIVs and the mechanism underlying AIV cross-species transmission.

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