Liaocheng University Agricultural Science and Engineering School, No 1, Hunan Street, Dongchangfu District, Liaocheng City, Shandong Province 252000, China.
Liaocheng University Agricultural Science and Engineering School, No 1, Hunan Street, Dongchangfu District, Liaocheng City, Shandong Province 252000, China.
Res Vet Sci. 2023 Jun;159:84-92. doi: 10.1016/j.rvsc.2023.04.013. Epub 2023 Apr 23.
Fowl adenovirus serotype 4 (FAdV-4) is a double-stranded DNA virus that mainly infects broiler chickens and has caused huge economic losses to the poultry industry. Recently, an FAdV-4 strain, SDLC202009, the causative pathogen of hydropericardium-hepatitis syndrome (HHS) in Liaocheng, Shandong, was isolated from commercial laying hens and propagated in specific pathogen free SPF chicken embryos. Pathogenicity studies showed that SDLC202009 could infect SPF chicken embryos and chickens, with a mortality rate of 100%. The complete genome was sequenced, and phylogenetic analysis showed that SDLC202009 belonged to the FAdV-4 cluster, with a genome length of 43, 077 bp. The SDLC202009 had 99.9% identity with the JSJ13 and SD1601, which were recently isolated in China. Compared to the recently isolated strain in China, SDLC202009 had deleted open reading frame 19 (ORF19), ORF27, ORF48, and ORF0. SDLC202009 harbored amino acid site mutations in the main structural proteins hexon, fiber1, and fiber2 similar with those in highly pathogenic strains. Furthermore, SDLC202009 showed unique mutations in hexon A571P, fiber1 E216K, and fiber2 N98K. In summary, our findings provide theoretical support for prevention and control of the HHS.
禽腺病毒血清型 4(FAdV-4)是一种双链 DNA 病毒,主要感染肉鸡,给家禽业造成了巨大的经济损失。最近,从山东聊城产蛋鸡中分离到一株引起心包积液-肝炎综合征(HHS)的 FAdV-4 株 SDLC202009,在 SPF 鸡胚中增殖。致病性研究表明,SDLC202009 可以感染 SPF 鸡胚和鸡,死亡率为 100%。对其全基因组进行测序,进化分析表明 SDLC202009 属于 FAdV-4 群,基因组长度为 43077bp。SDLC202009 与中国近期分离的 JSJ13 和 SD1601 株的同源性为 99.9%。与中国近期分离株相比,SDLC202009 缺失了 ORF19、ORF27、ORF48 和 ORF0。SDLC202009 的主要结构蛋白 hexon、fiber1 和 fiber2 氨基酸位点突变与高致病性株相似。此外,SDLC202009 在 hexon A571P、fiber1 E216K 和 fiber2 N98K 上具有独特的突变。综上所述,本研究结果为 HHS 的防控提供了理论依据。