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Identification of Goose-Origin Parvovirus As a Cause of Newly Emerging Beak Atrophy and Dwarfism Syndrome in Ducklings

Overview
Specialty Microbiology
Date 2016 May 20
PMID 27194692
Citations 18
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Abstract

A recent epizootic outbreak, in China, of duck beak atrophy and dwarfism syndrome (BADS) was investigated using electron microscopic, genetic, and virological studies, which identified a parvovirus with a greater similarity to goose parvovirus (GPV) (97% protein homology) than to Muscovy duck parvovirus (MDPV) (90% protein homology). The new virus, provisionally designated GPV-QH15, was found to be antigenically more closely related to GPV than to MDPV in a virus neutralization assay. These findings were further supported by phylogenetic analysis showing that GPV-QH15 evolved from goose lineage parvoviruses, rather than from Muscovy duck- or other duck species-related parvoviruses. In all, two genetic lineages (GPV I and GPV II) were identified from the GPV samples analyzed, and GPV-QH15 was found to be closely clustered with two known goose-origin parvoviruses (GPVa2006 and GPV1995), together forming a distinctive GPV IIa sublineage. Finally, structural modeling revealed that GPV-QH15 and the closely related viruses GPVa2006 and GPV1995 possessed identical clusters of receptor-interacting amino acid residues in the VP2 protein, a major determinant of viral receptor binding and host specificity. Significantly, these three viruses differed from MDPVs and other GPVs at these positions. Taken together, these results suggest that GPV-QH15 represents a new variant of goose-origin parvovirus that currently circulates in ducklings and causes BADS, a syndrome reported previously in Europe. This new finding highlights the need for future surveillance of GPV-QH15 in poultry in order to gain a better understanding of both the evolution and the biology of this emerging parvovirus.

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References
1.
Jansson D, Feinstein R, Kardi V, Mato T, Palya V . Epidemiologic investigation of an outbreak of goose parvovirus infection in Sweden. Avian Dis. 2007; 51(2):609-13. DOI: 10.1637/0005-2086(2007)51[609:EIOAOO]2.0.CO;2. View

2.
Zhu Y, Zhou Z, Huang Y, Yu R, Dong S, Li Z . Identification of a recombinant Muscovy Duck parvovirus (MDPV) in Shanghai, China. Vet Microbiol. 2014; 174(3-4):560-564. DOI: 10.1016/j.vetmic.2014.10.032. View

3.
Zadori Z, Erdei J, Nagy J, Kisary J . Characteristics of the genome of goose parvovirus. Avian Pathol. 1994; 23(2):359-64. DOI: 10.1080/03079459408419004. View

4.
Wozniakowski G, Samorek-Salamonowicz E, Kozdrun W . Quantitative analysis of waterfowl parvoviruses in geese and Muscovy ducks by real-time polymerase chain reaction: correlation between age, clinical symptoms and DNA copy number of waterfowl parvoviruses. BMC Vet Res. 2012; 8:29. PMC: 3378466. DOI: 10.1186/1746-6148-8-29. View

5.
Zhao H, Xie Z, Xie L, Deng X, Xie Z, Luo S . Molecular characterization of the full muscovy duck parvovirus, isolated in guangxi, china. Genome Announc. 2014; 2(6). PMC: 4263826. DOI: 10.1128/genomeA.01249-14. View