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2023年中国南方传染性法氏囊病病毒基因的系统发育分析

Phylogenetic analysis of gene of the infectious bursal disease virus in South China during 2023.

作者信息

Zhu Kensi, Wu Qi, Leng Mei, Wang Zhanxin, Lin Wencheng

机构信息

College of Animal Science, South China Agricultural University, Guangzhou, China.

College of Veterinary Medicine, South China Agricultural University, Guangzhou, China.

出版信息

Front Vet Sci. 2025 Apr 15;12:1575407. doi: 10.3389/fvets.2025.1575407. eCollection 2025.

Abstract

Infectious Bursal Disease (IBD) is an acute, highly infectious, immunosuppressive disease caused by the infectious bursal disease virus (IBDV). To elucidate the prevalence of IBDV in southern China, a total of 60 tissues (including spleen and bursa) suspected of IBDV infection were collected from broiler chickens in 2023. In this study, a total of 31 IBDV strains were successfully isolated. The gene sequences of these isolates were sequenced and analysed. The results showed that 8 of the isolates were identified as very virulent strains, 11 as classical strains and 12 as novel variants. The nucleotide sequence identity among the isolates ranged from 90.7 to 100%, as determined by MegAlign. Further analysis revealed that the novel mutant strains exhibited characteristic amino acid sites are 252I, 254 N, 262Y, 299S and 318D. Phylogenetic analysis of the IBDV isolates and reference strains from South China demonstrated that the novel mutant strain has diverged from previously prevalent mutant strains, such as Variant E and GLS, forming a distinct lineage. This finding implies that the high mutation rate of IBDV may compromise vaccine efficacy and pose new challenges for the prevention and control of IBDV in poultry production.

摘要

传染性法氏囊病(IBD)是一种由传染性法氏囊病病毒(IBDV)引起的急性、高度传染性、免疫抑制性疾病。为阐明IBDV在中国南方的流行情况,2023年从肉鸡中总共收集了60个疑似感染IBDV的组织(包括脾脏和法氏囊)。在本研究中,共成功分离出31株IBDV毒株。对这些分离株的基因序列进行了测序和分析。结果显示,其中8株分离株被鉴定为超强毒株,11株为经典毒株,12株为新型变异株。通过MegAlign测定,分离株之间的核苷酸序列同一性在90.7%至100%之间。进一步分析表明,新型突变株的特征性氨基酸位点为252I、254N、262Y、299S和318D。对来自中国南方的IBDV分离株和参考毒株进行系统发育分析表明,新型突变株已与先前流行的突变株如变异株E和GLS分化,形成一个独特的谱系。这一发现意味着IBDV的高突变率可能会损害疫苗效力,并给家禽生产中IBD的防控带来新挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bff5/12037624/51d7542f2632/fvets-12-1575407-g001.jpg

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