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Series GSE241418 Query DataSets for GSE241418
Status Public on Aug 27, 2023
Title Transcriptomic and Translatomic Analyses Reveal Insights into the Signaling Pathways of the Innate Immune Response in the Spleens of SPF Chickens Infected with Avian Reovirus
Organism Gallus gallus
Experiment type Expression profiling by high throughput sequencing
Other
Summary Avian reovirus (ARV) infection is prevalent in farmed poultry, causes viral arthritis and severe immunosuppression. The spleen plays an important role in host defense against pathogen infection. In this study, transcriptome and translatome sequencing technology were combined to investigate the mechanisms of transcriptional and translational regulation in the spleen after ARV infection. On a genome-wide scale, ARV infection can significantly reduce the translation efficiency (TE) of splenic genes. Differentially expressed translational efficiency genes (DTEGs) were identified, including 15 upregulated DTEGs and 396 downregulated DTEGs. These DTEGs were mainly enriched in immune regulation signaling pathways, which indicates that ARV infection reduces the innate immune response in the spleen. In addition, combined analyses revealed that the innate immune response involves the effects of transcriptional and translational regulation. Moreover, we discovered the key gene IL4I1, the most significantly upregulated gene at both the transcriptional and translational levels. Further studies in DF1 cells showed that overexpression of IL4I1 could inhibit the replication of ARV, while inhibiting the expression of endogenous IL4I1 with siRNA promoted the replication of ARV. Overexpression of IL4I1 significantly downregulated the mRNA expression of IFN-β, LGP2, TBK1 and NF-κB; however, the expression of these genes was significantly upregulated after inhibition of IL4I1, suggesting that IL4I1 may be a negative feedback regulator of innate immune signaling pathways. In addition, the IL4I1 protein may interact with the ARV σA protein, and we speculate that the IL4I1 protein plays a regulatory role by interacting with the σA protein. This study not only provides a new perspective on the regulatory mechanisms of the innate immune response after ARV infection but also enriches the knowledge of the host defense mechanisms against ARV invasion and the outcome of ARV evasion of the host innate immune response.
 
Overall design High-throughput sequencing of avian reovirus infected or not infected SPF chicken spleen tissue.
 
Contributor(s) Wang S, Huang T, Xie Z, Wan L, Ren H, Wu T, Xie L, Luo S, Li M, Xie Z, Fan Q, Huang J, Zeng T, Zhang Y, Zhang M, Wei Y
Citation(s) 38140587
Submission date Aug 22, 2023
Last update date Jan 03, 2024
Contact name tengda huang
E-mail(s) 2022324065113@stu.scu.edu.cn
Phone +8615208155933
Organization name sichuan university
Street address gaopeng road
City chengdu
ZIP/Postal code 610065
Country China
 
Platforms (1)
GPL16133 Illumina HiSeq 2000 (Gallus gallus)
Samples (8)
GSM7728585 Spleen_ARV_rep1_RNA
GSM7728586 Spleen_ARV_rep2_RNA
GSM7728587 Spleen_CK_rep1_RNA
Relations
BioProject PRJNA1008115

Download family Format
SOFT formatted family file(s) SOFTHelp
MINiML formatted family file(s) MINiMLHelp
Series Matrix File(s) TXTHelp

Supplementary file Size Download File type/resource
GSE241418_RAW.tar 1.6 Mb (http)(custom) TAR (of TXT)
SRA Run SelectorHelp
Raw data are available in SRA
Processed data provided as supplementary file

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