Genome-wide CRISPR screening identifies RAB8B as a candidate target for improving disease resistance against Glaesserella parasuis in pigs

Glaesserella parasuis ( G. parasuis ) is a major pathogen causing Glässer’s disease in pigs, leading to substantial economic losses in the global swine industry. However, the host genetic factors governing its pathogenesis remain poorly understood. Here, we performed a genome-wide CRISPR-Cas9 knockout screen in porcine LLC-PK1 cells and identified RAB8B as a critical host factor promoting G. parasuis infection. Functional validation showed that RAB8B knockout significantly improved host cell viability, reduced bacterial adhesion and invasion, and preserved epithelial barrier integrity after infection. Transcriptomic and mechanistic analyses revealed that G. parasuis infection triggered pathological and sustained hyperactivation of the TLR5/NF-κB signaling pathway. RAB8B depletion specifically suppressed this sustained activation at the late stage of infection. This effect attenuated the production of key pro-inflammatory cytokines ( IL8 , IL6 , TNF-α ) and promoted cell survival. This study demonstrates that RAB8B exacerbates G. parasuis infection by maintaining pathological sustained activation of the TLR5/NF-κB pathway. It uncovers a novel host-directed regulatory mechanism and identifies RAB8B as an in vitro candidate gene meriting further in vivo evaluation for improving disease resistance in pigs. These in vitro findings provide preliminary insights that may inform future research on pig health management.

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Publication Details

Journal
BMC Veterinary Research
Published
2026-09-01
DOI
https://doi.org/10.1186/s12917-026-05881-2
Primary Topic
Microbial infections and disease research
Type
article
Field-Weighted Citation Impact
0.00

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article

Genome-wide CRISPR screening identifies RAB8B as a candidate target for improving disease resistance against Glaesserella parasuis in pigs

Shuilian Li, Xiangwei Deng, Jiayi Zeng, Hongbo Chen et al.
BMC Veterinary Research
Microbial infections and disease research
article

Genome-wide CRISPR screening identifies RAB8B as a candidate target for improving disease resistance against Glaesserella parasuis in pigs

Shuilian Li, Xiangwei Deng, Jiayi Zeng, Hongbo Chen, Shengsong Xie, Ke Xu, Xinqi Zeng, Huanhuan Zhou, Xuexue Chen, Hailong Liu, Xiaoyu Zhang
article en

Abstract

Glaesserella parasuis ( G. parasuis ) is a major pathogen causing Glässer’s disease in pigs, leading to substantial economic losses in the global swine industry. However, the host genetic factors governing its pathogenesis remain poorly understood. Here, we performed a genome-wide CRISPR-Cas9 knockout screen in porcine LLC-PK1 cells and identified RAB8B as a critical host factor promoting G. parasuis infection. Functional validation showed that RAB8B knockout significantly improved host cell viability, reduced bacterial adhesion and invasion, and preserved epithelial barrier integrity after infection. Transcriptomic and mechanistic analyses revealed that G. parasuis infection triggered pathological and sustained hyperactivation of the TLR5/NF-κB signaling pathway. RAB8B depletion specifically suppressed this sustained activation at the late stage of infection. This effect attenuated the production of key pro-inflammatory cytokines ( IL8 , IL6 , TNF-α ) and promoted cell survival. This study demonstrates that RAB8B exacerbates G. parasuis infection by maintaining pathological sustained activation of the TLR5/NF-κB pathway. It uncovers a novel host-directed regulatory mechanism and identifies RAB8B as an in vitro candidate gene meriting further in vivo evaluation for improving disease resistance in pigs. These in vitro findings provide preliminary insights that may inform future research on pig health management.

BMC Veterinary Research
Wuhan Polytechnic University (CN), Huazhong Agricultural University (CN), Ministry of Agriculture (CA)
National Natural Science Foundation of China, China Agricultural Research System, Fundamental Research Funds for the Central Universities
Industry, innovation and infrastructure
Openalex Percentile: Top 13%
Microbial infections and disease research
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