Characterization of Conserved Evolution in H7N9 Avian Influenza Virus Prior Mass Vaccination.

IF 5.5 1区 农林科学 Q1 IMMUNOLOGY
Virulence Pub Date : 2024-12-01 Epub Date: 2024-09-06 DOI:10.1080/21505594.2024.2395837
Dongchang He, Xiyue Wang, Huiguang Wu, Kairui Cai, Xiaoli Song, Xiaoquan Wang, Jiao Hu, Shunlin Hu, Xiaowen Liu, Chan Ding, Daxin Peng, Shuo Su, Min Gu, Xiufan Liu
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Abstract

Vaccination is crucial for the prevention and mitigation of avian influenza infections in China. The inactivated H7N9 vaccine, when administered to poultry, significantly lowers the risk of infection among both poultry and humans, while also markedly decreasing the prevalence of H7N9 detections. Highly pathogenic (HP) H7N9 viruses occasionally appear, whereas their low pathogenicity (LP) counterparts have been scarcely detected since 2018. However, these contributing factors remain poorly understood. We conducted an exploratory investigation of the mechanics via the application of comprehensive bioinformatic approaches. We delineated the Yangtze River Delta (YRD) H7N9 lineage into 5 clades (YRD-A to E). Our findings highlight the emergence and peak occurrence of the LP H7N9-containing YRD-E clade during the 5th epidemic wave in China's primary poultry farming areas. A more effective control of LP H7N9 through vaccination was observed compared to that of its HP H7N9 counterpart. YRD-E exhibited a tardy evolutionary trajectory, denoted by the conservation of its genetic and antigenic variation. Our analysis of YRD-E revealed only minimal amino acid substitutions along its phylogenetic tree and a few selective sweep mutations since 2016. In terms of epidemic fitness, the YRD-E was measured to be lower than that of the HP variants. Collectively, these findings underscore the conserved evolutionary patterns distinguishing the YRD-E. Given the conservation presented in its evolutionary patterns, the YRD-E LP H7N9 is hypothesized to be associated with a reduction following the mass vaccination in a relatively short period owing to its lower probability of antigenic variation that might affect vaccine efficiency.

大规模疫苗接种前 H7N9 禽流感病毒保守演化的特征。
接种疫苗对于预防和减轻中国的禽流感感染至关重要。禽类接种 H7N9 灭活疫苗后,可显著降低禽类和人类的感染风险,同时还能明显降低 H7N9 的检出率。高致病性(HP)H7N9 病毒偶尔会出现,而其低致病性(LP)对应病毒自 2018 年以来已很少被检测到。然而,人们对这些诱因仍然知之甚少。我们通过应用全面的生物信息学方法对机理进行了探索性研究。我们将长江三角洲(YRD)H7N9 病毒系划分为 5 个支系(YRD-A 至 E)。我们的研究结果表明,含 LP H7N9 的 YRD-E 支系在中国主要家禽养殖区的第五次流行潮期间出现并达到高峰。与 HP H7N9 相比,接种疫苗能更有效地控制 LP H7N9。YRD-E表现出缓慢的进化轨迹,这体现在其基因和抗原变异的保持上。我们对 YRD-E 的分析表明,自 2016 年以来,其系统发育树上只有极少量的氨基酸置换和少量的选择性突变。据测定,YRD-E 的流行适应性低于 HP 变异株。总之,这些发现强调了 YRD-E 的保守进化模式。鉴于 YRD-E LP H7N9 的进化模式呈现出的保守性,我们推测,由于其抗原变异的概率较低,可能会影响疫苗的效率,因此在相对较短的时间内大规模接种疫苗后,YRD-E LP H7N9 的发病率会有所下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Virulence
Virulence IMMUNOLOGY-MICROBIOLOGY
CiteScore
9.20
自引率
1.90%
发文量
123
审稿时长
6-12 weeks
期刊介绍: Virulence is a fully open access peer-reviewed journal. All articles will (if accepted) be available for anyone to read anywhere, at any time immediately on publication. Virulence is the first international peer-reviewed journal of its kind to focus exclusively on microbial pathogenicity, the infection process and host-pathogen interactions. To address the new infectious challenges, emerging infectious agents and antimicrobial resistance, there is a clear need for interdisciplinary research.
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