A Single Amino Acid at Residue 188 of the Hexon Protein Is Responsible for the Pathogenicity of the Emerging Novel Virus Fowl Adenovirus 4
文献类型: 外文期刊
第一作者: Zhang, Yu
作者: Zhang, Yu;Liu, Aijing;Wang, Yanan;Cui, Hongyu;Gao, Yulong;Qi, Xiaole;Liu, Changjun;Zhang, Yanping;Li, Kai;Gao, Li;Pan, Qing;Wang, Xiaomei;Wang, Xiaomei
作者机构:
关键词: fowl adenovirus 4; virulence; hexon; pathogenesis; vaccine development
期刊名称:JOURNAL OF VIROLOGY ( 影响因子:5.103; 五年影响因子:5.078 )
ISSN: 0022-538X
年卷期: 2021 年 95 卷 17 期
页码:
收录情况: SCI
摘要: Since 2015, severe hydropericardium-hepatitis syndrome (HHS) associated with a novel fowl adenovirus 4 (FAdV-4) has emerged in China, representing a new challenge for the poultry industry. Although various highly pathogenic FAdV-4 strains have been isolated, the virulence factor and the pathogenesis of novel FAdV4 are unclear. In our previous studies, we reported that a large genomic deletion (1,966 bp) is not related to increased virulence. Here, two recombinant chimeric viruses, rHN20 strain and rFB2 strain, were generated from a highly pathogenic FAdV-4 strain by replacing the hexon or fiber-2 gene of a nonpathogenic FAdV-4, respectively. Both chimeric strains showed similar titers to the wild-type strain in vitro. Notably, rFB2 and the wild-type strain induced 100% mortality, while no mortality or clinical signs appeared in chickens inoculated with rHN20, indicating that hexon, but not fiber-2, determines the novel FAdV-4 virulence. Furthermore, an R188I mutation in the hexon protein identified residue 188 as the key amino acid for the reduced pathogenicity. The rR188I mutant strain was significantly neutralized by chicken serum in vitro and in vivo, whereas the wild-type strain was able to replicate efficiently. Finally, the immunogenicity of the rescued rR188I was investigated. Nonpathogenic rR188I provided full protection against lethal FAdV-4 challenge. Collectively, these findings provide an in-depth understanding of the molecular basis of novel FAdV-4 pathogenicity and present rR188I as a potential live attenuated vaccine candidate or a novel vaccine vector for HHS vaccines. IMPORTANCE HHS associated with a novel FAdV-4 infection in chickens has caused huge economic losses to the poultry industry in China since 2015. The molecular basis for the increased virulence remains largely unknown. Here, we demonstrate that the hexon gene is vital for FAdV-4 pathogenicity. Furthermore, we show that the amino acid residue at position 188 of the hexon protein is responsible for pathogenicity. Importantly, the rR188I mutant strain was neutralized by chicken serum in vitro and in vivo, whereas the wild-type strain was not. Further, the rR188I mutant strain provided complete protection against FAdV-4 challenge. Our results provide a molecular basis of the increased virulence of novel FAdV-4. We propose that the rR188I mutant is a potential live attenuated vaccine against HHS and a new vaccine vector for HHS-combined vaccines.
分类号:
- 相关文献
作者其他论文 更多>>
-
Impact of residual antibiotics on microbial decomposition of livestock manures in Eutric Regosol: Implications for sustainable nutrient recycling and soil carbon sequestration
作者:Fang, Linfa;Lakshmanan, Prakash;Su, Xiaoxuan;Shi, Yujia;Chen, Zheng;Zhang, Yu;Xiao, Ran;Chen, Xinping;Lakshmanan, Prakash;Wu, Junxi;Lakshmanan, Prakash;Lakshmanan, Prakash;Sun, Wei
关键词:Residual antibiotics; Livestock manure decomposition; Microbial community; Co -occurrence network; Enzyme activities
-
Overexpression of AcWRKY31 Increases Sensitivity to Salt and Drought and Improves Tolerance to Mealybugs in Pineapple
作者:Wai, Myat Hnin;Luo, Tiantian;Zhou, Qiao;Mohammadi, Mohammad Aqa;Cheng, Han;Aslam, Mohammad;Liu, Chang;Chai, Gaifeng;Huang, Dongping;Liu, Yanhui;Cai, Hanyang;Wang, Xiaomei;Qin, Yuan;Wang, Lulu;Wai, Myat Hnin;Luo, Tiantian;Zhou, Qiao;Mohammadi, Mohammad Aqa;Cheng, Han;Aslam, Mohammad;Liu, Chang;Chai, Gaifeng;Huang, Dongping;Liu, Yanhui;Cai, Hanyang;Wang, Xiaomei;Qin, Yuan;Wang, Lulu;Wai, Myat Hnin;Luo, Tiantian;Zhou, Qiao;Mohammadi, Mohammad Aqa;Cheng, Han;Aslam, Mohammad;Liu, Chang;Chai, Gaifeng;Huang, Dongping;Liu, Yanhui;Cai, Hanyang;Wang, Xiaomei;Qin, Yuan;Wang, Lulu;Wai, Myat Hnin;Priyadarshani, S. V. G. N.;Wang, Xiaomei
关键词:pineapple; WRKY transcription factor; AcWRKY31; biotic stress; abiotic stress
-
Nano-Pesticides and Fertilizers: Solutions for Global Food Security
作者:Tang, Yuying;Zhu, Guikai;Rui, Yukui;Zhao, Weichen;Tan, Zhiqiang;Huang, Lili;Zhang, Peng;Gao, Li
关键词:nanotechnology; nano-fertilizers; nano-pesticides; food security; sustainable agriculture
-
Optimizing the Total Spikelets Increased Grain Yield in Rice
作者:Liu, Kun;Zhang, Yu;Li, Shouguo;Zhang, Jingli;Deng, Shan;Zhang, Yiying;Huang, Jingyan;Ren, Li;Chu, Yunxia;Zhao, Hong;Chen, Hairong;Liu, Kun;Zhang, Yu;Li, Shouguo;Zhang, Jingli;Deng, Shan;Zhang, Yiying;Huang, Jingyan;Ren, Li;Chu, Yunxia;Zhao, Hong;Chen, Hairong;Zhang, Kaixi;Cui, Jiarong;Li, Zhikang;Huang, Jian
关键词:rice (Oryza sativa L.); high yield; rice varieties with various yield types; total spikelets; total nitrogen application rate
-
Stimuli-responsive biodegradable silica nanoparticles: From native structure designs to biological applications
作者:Qi, Qianhui;Wang, Wei;Shen, Qian;Geng, Jiaying;An, Weizhen;Wu, Qiong;Yu, Changmin;Shen, Qian;Geng, Jiaying;An, Weizhen;Wu, Qiong;Yu, Changmin;Qi, Qianhui;Yu, Changmin;Wang, Nan;Zhang, Yu;Li, Xue;Li, Lin
关键词:Biodegradation; Silica nanoparticles; Stimuli -responsive; Multiple frameworks; Biological applications
-
N123I mutation in the ALV-J receptor-binding domain region enhances viral replication ability by increasing the binding affinity with chNHE1
作者:Yu, Mengmeng;Zhang, Yao;Zhang, Li;Wang, Suyan;Liu, Yongzhen;Xu, Zhuangzhuang;Liu, Peng;Chen, Yuntong;Guo, Ru;Meng, Lingzhai;Zhang, Tao;Fan, Wenrui;Qi, Xiaole;Gao, Li;Zhang, Yanping;Cui, Hongyu;Gao, Yulong;Gao, Yulong;Gao, Yulong
关键词:
-
Sepiolite-supported nanoscale zero-valent iron alleviates Cd&As accumulation in rice by reducing Cd&As bioavailability in paddy soil and promoting Cd&As sequestration in iron plaque
作者:Sun, Shuo;Zhang, Nan;Wang, Yanan;Zhang, Yang;Su, Shiming;Zeng, Xibai;Huang, Jiaqing;Wen, Jiong;Peng, Zhi
关键词:Sepiolite-supported nanoscale zero-valent iron; Cd&As co-contaminated soil; Cd&As bioavailability; Cd&As co-remediation; Iron plaque; Rice grain