Intergrated Transcriptomic and Proteomic Analysis Revealed the Differential Responses to Novel Duck Reovirus Infection in the Bursa of Fabricius of Cairna moschata

Viruses. 2022 Jul 25;14(8):1615. doi: 10.3390/v14081615.

Abstract

The bursa of Fabricius is an immunologically organ against the invasion of duck reovirus (DRV), which is a fatal bird virus belonging to the Reoviridae family. However, responses of the bursa of Fabricius of Cairna moschata to novel DRV (NDRV) infection are largely unknown. Transcriptomes and proteomes of the samples from control and two NDRV strain (HN10 and JDm10) with different virulence were analyzed. Differentially expressed genes and differential accumulated proteins were enriched in the serine protease system and innate immune response clusters. Most of the immune-related genes were up-regulated under both JDm10/HN10 infections. However, the immune-related proteins were only accumulated under HN10 infection. For the serine protease system, coagulation factor IX, three chains of fibrinogen, and complements C8, C5, and C2s were significantly up-regulated by the HN10 infection, suggesting that the serine protease-mediated immune system might be involved in the resistance to NDRV infection. For the innate and adaptive immune system, RIG-I, MDA5, MAPK20, and IRF3 were significantly up-regulated, indicating their important roles against invaded virus. TLR-3 and IKBKB were only up-regulated in the liver cells, MAPK20 was only up-regulated in the bursa of Fabricius cells, and IRAK2 was only up-regulated in the spleen samples. Coagulation factor IX was increased in the bursa of Fabricius, not in the liver and spleen samples. The data provides a detailed resource for studying the proteins participating in the resistances of the bursa of Fabricius of duck to NDRV infections.

Keywords: Cairna moschata; differential accumulated protein; proteomic analysis; reovirus; the bursa of Fabricius; transcriptomic analysis.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Bursa of Fabricius / metabolism
  • Ducks
  • Factor IX / metabolism
  • Proteomics
  • Reoviridae Infections*
  • Reoviridae* / metabolism
  • Serine Proteases / metabolism
  • Transcriptome

Substances

  • Factor IX
  • Serine Proteases

Grants and funding

This research was funded by Major Science and Technology Projects of Zhejiang grant number (2015C02012, 2019C02052), and Special Funding Project of Zhejiang Academy of Agricultural Sciences (2022R22CB003). The APC was funded by [2015C02012].