College of Animal Science, Wenzhou Vocational College of Science and Technology, Wenzhou, China; College of Veterinary Medicine, Northeast Agricultural University, Harbin, China.
College of Veterinary Medicine, Northeast Agricultural University, Harbin, China.
Comp Immunol Microbiol Infect Dis. 2023 Oct;101:102052. doi: 10.1016/j.cimid.2023.102052. Epub 2023 Aug 27.
Aleutian mink disease (AMD) is one of the most serious diseases in minks worldwide, it brings tremendous financial losses in mink farming. AMD virus (AMDV) has unusually high genetic diversity, its genomic structure remains unclear. In 2014, sudden death of breeding minks was occurred in northeast China. After clinical signs evaluation and virus isolation, AMDV was identified in all sudden death minks, we investigated the complete genomic sequence of AMDV-LM isolated from the sudden death case. The full-genome sequence of AMDV-LM was 7 nucleotides (nts) or 8 nts longer than isolates AMDV-BJ and AMDV-G. AMDV-LM contained two unique nucleotide changes in VP2 (G79T, T710C), which led to two amino acid changes G27W and L237S. For NS1, some unique point mutations, such as A374C, A428C, A463C, and T476A were found and resulted in four unique amino acid mutations at N24V, H125P, V143P, K155Q, and V159N, respectively. The predicted secondary structure of the 5' terminal of AMDV-LM formed a large bubble formation near the 5' end, which affected the stability of the U-shaped hairpin. Phylogenetic analysis demonstrated that AMDV-LM was closely related to Chinese isolates and confirmed that AMDV strains circulating in China had different origins of ancestors. This study was first to investigate the association of sudden death of adult breeding minks with AMDV infection. Our findings provide useful suggestions for evaluation of the pathogenic potential of AMDV, additional details on AMDV genome characterization were also presented. Future work should focus on the importance of AMDV-LM strain in mink infection.
阿留申病(Aleutian mink disease,AMD)是世界范围内水貂养殖业面临的最严重疾病之一,给水貂养殖业带来了巨大的经济损失。AMD 病毒(AMDV)具有异常高的遗传多样性,其基因组结构仍不清楚。2014 年,中国东北地区的繁殖水貂突然死亡。经过临床症状评估和病毒分离,在所有突然死亡的水貂中均鉴定出 AMDV,我们对从死亡水貂中分离到的 AMDV-LM 进行了全基因组序列分析。AMDV-LM 的全基因组序列比 AMDV-BJ 和 AMDV-G 长 7 个核苷酸(nt)或 8 个 nt。AMDV-LM 在 VP2 中存在两个独特的核苷酸变化(G79T,T710C),导致 G27W 和 L237S 两个氨基酸变化。在 NS1 中,发现了一些独特的点突变,如 A374C、A428C、A463C 和 T476A,导致 N24V、H125P、V143P、K155Q 和 V159N 四个独特的氨基酸突变。AMDV-LM 的 5'末端的预测二级结构在 5'末端附近形成了一个大的泡状结构,影响了 U 型发夹的稳定性。系统进化分析表明,AMDV-LM 与中国分离株密切相关,并证实了中国流行的 AMDV 株系具有不同的祖先起源。本研究首次调查了成年繁殖水貂突然死亡与 AMDV 感染的关系。我们的研究结果为评估 AMDV 的致病潜力提供了有用的建议,并进一步阐述了 AMDV 基因组特征的详细信息。未来的工作应侧重于 AMDV-LM 株系在水貂感染中的重要性。