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Quantitative Polymerase Chain Reaction-based Analyses of Murine Intestinal Microbiota After Oral Antibiotic Treatment
Published on: November 17, 2018
Duck plague virus infection alter the microbiota composition and intestinal functional activity in Muscovy ducks
Jie Kong1, Xiuhong Wu1, Liqin Liao1
1Heyuan Branch, Guangdong Provincial Laboratory of Lingnan Modern Agricultural Science and technology, College of Animal Science and Veterinary Medicine, South China Agricultural University, Guangzhou 510642, PR China; Guangdong Engineering Research Center for Vector Vaccine of Animal Virus, Guangzhou 510642, PR China; South China Collaborative Innovation Center for Poultry Disease Control and Product Safety, Guangzhou 510642, PR China.
Abstract:
Intestinal damage from the duck plague virus (DPV) infection affects intestinal inflammation factors expression and barrier dysfunction. Here we report findings from the pathogenicity of the intestinal tract, intestinal morphological, intestinal permeability, inflammatory cytokines, and tight junction gene expression in 72 two-wk-old Muscovy ducks exposed to DPV. The characterization of intestinal metabolites and their classification were examined using 16-sequencing technology. The primary outcomes of the study evaluated the correlation between intestinal microbiota characteristics and the degree of infected tissue. The secondary outcomes were to determine whether the biosignatures that defined the microbiota were positively or negatively correlated with viral infection. The tissue was infected accompanied a mild damage of liver and spleen, and severe intestinal bleeding. Two inoculation routes were constructed with susceptible animals to assess the pathogenicity of the DPV in order to enrich the status of infection in Muscovy ducks. High levels of virus titer from Muscovy ducks were found being in the intestine. The expression of INF-α and IL-β with viral infection increased at 4, and 6 dpi, respectively, after detecting of the inflammatory factor and barrier function genes. At 4 and 6 dpi, barrier function gene of ZO-1 and Occludin reduced. The severity of viral infection was significantly correlated with the characteristics of the intestinal microbiota. Ducks infected with the DPV had an increase in the phylum Firmicutes, a decrease in the phylum Actinobacteriota, and differential enrichment with the genus Bacteroides, Tyzzerella, Enterococcus, and Escherchia-Shigella, while the genus Rothia, Streptococcus, and Ralstonia were differentially enriched in the control group. The findings from the current study demonstrated that DPV infection leads to an imbalance of the intestinal microbiota and disruption of the microbial homeostasis in the intestinal tissue in ducks, which might be one of the mechanisms whereby DPV infection might be established in Muscovy ducks. Na+/K+-ATPase and Ca2+/Mg2+-ATPase activity monitoring also showed that viral infection reduced these activities. These findings imply that changes in intestinal microbiota, intestinal barrier gene expression, and inflammatory factor are related to viral infection. When taken as a whole, this work provides fresh perspectives on the characteristics of intestinal microbiota and the infection damage caused by the DPV.
Insights
Duck plague virus (DPV) infection severely damages the intestines, altering the gut microbiota and reducing barrier function. This study links DPV infection to specific microbial shifts and impaired intestinal health in Muscovy ducks.
Area of Science:
- Veterinary Virology
- Animal Pathology
- Microbiome Research
Background:
- Duck plague virus (DPV) causes significant intestinal damage, impacting inflammation and barrier integrity.
- Understanding DPV's effects on the Muscovy duck gut microbiome is crucial for disease management.
Purpose of the Study:
- To investigate the pathogenicity of DPV in the intestinal tract of Muscovy ducks.
- To analyze changes in intestinal microbiota, barrier function, and inflammatory responses following DPV infection.
- To correlate intestinal microbiota characteristics with the severity of DPV infection.
Main Methods:
- Seventy-two Muscovy ducks were exposed to DPV via two inoculation routes.
- Intestinal morphology, permeability, inflammatory cytokines, and tight junction gene expression (ZO-1, Occludin) were assessed.
- Intestinal metabolites were characterized using 16S rRNA sequencing technology.
Main Results:
- DPV infection led to severe intestinal bleeding, with high virus titers in the intestine.
- Inflammatory factors (INF-α, IL-β) increased, while barrier function genes (ZO-1, Occludin) decreased at 4 and 6 days post-infection.
- Significant alterations in gut microbiota were observed, including increased Firmicutes and decreased Actinobacteriota, with specific genera shifts correlating to infection severity.
Conclusions:
- DPV infection disrupts intestinal microbial homeostasis and barrier function in Muscovy ducks.
- Changes in the intestinal microbiota are significantly correlated with the severity of DPV infection.
- These findings provide insights into DPV pathogenesis and its impact on the duck gut ecosystem.

