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April 10, 2026Viruses0 citationsOpen Access

Characterization of a Goose-Origin Avian Orthoreovirus with Interferon Suppression Activity

YLYing LiuSouth China Agricultural UniversityYLYiming LiHuaqiao UniversityYXYingxuan XieTianjin University

Key Result

The goose-origin avian orthoreovirus strain SD0407 features 10 unique amino acid substitutions in its attachment protein and suppresses host interferon responses to enhance viral adaptability.

Key Points

  • This research aims to characterize the molecular features of a goose-origin avian orthoreovirus strain and its impact on immune responses in avian species.
  • Conducted complete genome analysis of the goose-origin strain SD0407.
  • Performed sequence comparison and phylogenetic analyses with related duck-origin reovirus strains.
  • Executed structural analysis of the σC attachment protein and molecular docking studies.
  • Profiled transcriptome to assess immune signaling activation.
  • Identified ten double-stranded RNA segments in strain SD0407.
  • Revealed close genetic relationship between SD0407 and duck-origin reoviruses.
  • Demonstrated unique amino acid substitutions in the σC attachment protein affecting receptor binding.
  • Showed that strain SD0407 does not induce type I, II, or III interferons and exhibits immune suppression.

Structured PICO

P
Population
Goose embryo fibroblasts and goose-origin avian orthoreovirus strain SD0407
I
Intervention
Infection with avian orthoreovirus strain SD0407
O
Outcome
Viral replication, interferon expression, and transcriptome profilingsurrogate

The goose-origin avian orthoreovirus strain SD0407 exhibits structural variability in its receptor-binding protein and suppresses host antiviral interferon responses, highlighting its adaptability and immune evasion mechanisms.

Abstract

The emergence of variant strains of Avian orthoreovirus (ARV) has caused substantial economic losses in the poultry industry worldwide, but the molecular features of goose-origin strains and viral transmission among different avian species remain poorly understood. Here, we describe a goose-origin avian orthoreovirus strain, SD0407, associated with growth retardation and joint swelling. Complete genome analysis identified ten double-stranded RNA segments. Sequence comparison indicated that SD0407 is closely related to previously reported duck-origin reovirus strains. Phylogenetic and recombination analyses showed that most segments clustered with duck-origin strains, indicating close genetic relatedness among waterfowl-origin orthoreoviruses. Sequence and structural analysis of the σC attachment protein revealed ten unique amino acid substitutions, including D250 within the DE-loop region involved in receptor-binding. Molecular docking suggested that σC interacts with the conserved AnxA2-S100A10 heterotetrameric receptor complex, providing a possible structural basis for receptor compatibility across avian species. Although SD0407 replicated efficiently in goose embryo fibroblasts, it did not induce expression of type I, II or III interferons. Transcriptome profiling revealed weak activation of innate immune signaling and downregulation of metabolic and cytoskeletal genes, consistent with effective suppression of antiviral responses. These findings demonstrate that SD0407 combines structural variability with immune evasion to enhance host adaptability and underscore the importance of sustained ARV surveillance in waterfowl populations.

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Cite This Study

Liu et al. (2026) studied Avian orthoreovirus infection. The goose-origin avian orthoreovirus strain SD0407 features 10 unique amino acid substitutions in its attachment protein and suppresses host interferon responses to enhance viral adaptability.

synapsesocial.com/papers/69d896566c1944d70ce07bechttps://doi.org/10.3390/v18040447
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