Hoan Tran Duc, Thao Doan Thi, Huong Giang Nguyen Thi, Thuong Bui Thi, Thu Huyen Nguyen Thi, Nguyen Nguyen Dinh, Hoai Thu Vu Thi, Khanh Linh Nguyen Thi, Dung Nguyen Viet, Hiroshi Kondo, Van Phan Le, Tuan Anh Mai Nguyen
Faculty of Animal Science and Veterinary Medicine, Bacgiang Agriculture and Forestry University, Bắc Giang, Vietnam,
Faculty of Animal Science and Veterinary Medicine, Bacgiang Agriculture and Forestry University, Bắc Giang, Vietnam.
Avian Dis. 2022 Oct;66(3):1-12. doi: 10.1637/aviandiseases-D-21-00087. Epub 2022 Sep 9.
The aim of this study is to identify and characterize virus isolates (which are named for Bacgiang Agriculture and Forestry University [BAFU]) from diseased Cherry Valley duck and mule duck flocks and investigate the damage caused by a novel parvovirus-related virus (DuPV) to tissues and organs, including the brain, cerebellum, kidney, liver, lung, spleen, and spinal cord. The results of phylogenetic analysis show that DuPV-BAFU evolved from a goose lineage and duck parvoviruses rather than from Muscovy duck parvoviruses. In the genetic lineages, DuPVs were identified from the DuPV samples analyzed, and DuPV-BAFU was found to be closely clustered with two known goose origin parvoviruses (GPVa2006 and GPV1995) and a duck GPVs. Finally, structural modeling revealed that DuPV-BAFU and the closely related viruses GPVa2006 and GPV1995 possessed identical clusters of receptor-interacting amino acid residues in the VP3 protein, a major determinant of viral receptor binding and host specificity. Significantly, these three viruses differed from DuPVs, Muscovy duck parvoviruses, and other goose parvoviruses at these positions. These results also demonstrated that DuPV-BAFU represents a new variant of goose-origin parvovirus that currently circulates in ducklings and causes beak atrophy and dwarfism syndrome, as noted in the previous reports in Europe, Taiwan, and China. This new finding highlights the need for future surveillance of DuPV-BAFU in waterfowl in order to gain a better understanding of both the evolution and the biology of this emerging parvovirus in waterfowl.
本研究的目的是从患病的樱桃谷鸭和骡鸭群中鉴定并表征病毒分离株(以北江农林大学[BAFU]命名),并调查一种新型细小病毒相关病毒(鸭细小病毒[DuPV])对包括脑、小脑、肾脏、肝脏、肺、脾脏和脊髓在内的组织和器官造成的损害。系统发育分析结果表明,DuPV-BAFU是从鹅谱系和鸭细小病毒进化而来,而非番鸭细小病毒。在遗传谱系中,从分析的DuPV样本中鉴定出了DuPV,并且发现DuPV-BAFU与两种已知的鹅源细小病毒(GPVa2006和GPV1995)以及一种鸭GPV紧密聚类。最后,结构建模显示,DuPV-BAFU以及与之密切相关的病毒GPVa2006和GPV1995在VP3蛋白中具有相同的受体相互作用氨基酸残基簇,VP3蛋白是病毒受体结合和宿主特异性的主要决定因素。值得注意的是,这三种病毒在这些位置与DuPV、番鸭细小病毒和其他鹅细小病毒不同。这些结果还表明,DuPV-BAFU代表了一种目前在雏鸭中传播并导致喙萎缩和侏儒综合征的鹅源细小病毒新变种,正如欧洲、台湾和中国之前的报道中所指出的那样。这一新发现凸显了未来对水禽中DuPV-BAFU进行监测的必要性,以便更好地了解这种新兴细小病毒在水禽中的进化和生物学特性。