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Chicken interferome: avian interferon-stimulated genes identified by microarray and RNA-seq of primary chick embryo fibroblasts treated with a chicken type I interferon (IFN-α). | LitMetric

AI Article Synopsis

  • Viruses that infect birds, such as avian influenza, threaten global chicken supply and can impact human health, necessitating a deeper understanding of bird defenses.
  • The study focuses on the type I interferon response in chickens, which is crucial for antiviral defense, though research on this response is more robust in mammals.
  • By using RNA-seq and two types of microarray technologies, the study identifies and confirms 193 genes regulated by interferon in chick embryo fibroblasts, enhancing knowledge of potential antiviral genes.

Article Abstract

Viruses that infect birds pose major threats-to the global supply of chicken, the major, universally-acceptable meat, and as zoonotic agents (e.g. avian influenza viruses H5N1 and H7N9). Controlling these viruses in birds as well as understanding their emergence into, and transmission amongst, humans will require considerable ingenuity and understanding of how different species defend themselves. The type I interferon-coordinated response constitutes the major antiviral innate defence. Although interferon was discovered in chicken cells, details of the response, particularly the identity of hundreds of stimulated genes, are far better described in mammals. Viruses induce interferon-stimulated genes but they also regulate the expression of many hundreds of cellular metabolic and structural genes to facilitate their replication. This study focusses on the potentially anti-viral genes by identifying those induced just by interferon in primary chick embryo fibroblasts. Three transcriptomic technologies were exploited: RNA-seq, a classical 3'-biased chicken microarray and a high density, "sense target", whole transcriptome chicken microarray, with each recognising 120-150 regulated genes (curated for duplication and incorrect assignment of some microarray probesets). Overall, the results are considered robust because 128 of the compiled, curated list of 193 regulated genes were detected by two, or more, of the technologies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4974698PMC
http://dx.doi.org/10.1186/s13567-016-0363-8DOI Listing

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