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转录组分析揭示了一种新的与毒力相关的三聚体自转运蛋白,该蛋白负责副猪嗜血杆菌的自凝集。

Transcriptome analysis reveals a new virulence-associated trimeric autotransporter responsible for Glaesserella parasuis autoagglutination.

机构信息

Institute of Animal Husbandry and Veterinary Medicine, Zhejiang Academy of Agricultural Sciences, Hangzhou, 310021, China.

出版信息

Vet Res. 2024 Oct 7;55(1):130. doi: 10.1186/s13567-024-01387-7.

Abstract

Capsular polysaccharide is an important virulence factor of Glaesserella parasuis. An acapsular mutant displays multiple phenotype variations, while the underlying mechanism for these variations is unknown. In this study, we created an acapsular mutant by deleting the wza gene in the capsule locus. We then used transcriptome analysis to compare the gene expression profiles of the wza deletion mutant with those of the parental strain to understand the possible reasons for the phenotypic differences. The mutant Δwza, which has a deleted wza gene, secreted less polysaccharide and lost its capsule structure. The Δwza exhibited increased autoagglutination, biofilm formation and adherence to eukaryotic cells, while the complementary strain C-Δwza partially restored the phenotype. Transcriptome analysis revealed several differentially expressed genes (DEGs) in Δwza, including up-regulated outer membrane proteins and proteins involved in peptidoglycan biosynthesis, suggesting that wza deletion affects the cell wall homeostasis of G. parasuis. Transcriptome analysis revealed the contribution of non-coding RNAs in the regulation of DEGs. Moreover, a new virulence-associated trimeric autotransporter, VtaA31 is upregulated in Δwza. It is responsible for enhanced autoagglutination but not for enhanced biofilm formation and adherence to eukaryotic cells in Δwza. In conclusion, these data indicate that wza affects the expression of multiple genes, especially those related to cell wall synthesis. Furthermore, they provide evidence that vtaA31 is involved in the autoagglutination of G. parasuis.

摘要

荚膜多糖是副猪嗜血杆菌的重要毒力因子。无荚膜突变体表现出多种表型变化,但其变化的潜在机制尚不清楚。在本研究中,我们通过删除荚膜基因座中的 wza 基因创建了一个无荚膜突变体。然后,我们使用转录组分析比较了 wza 缺失突变体与亲本菌株的基因表达谱,以了解表型差异的可能原因。缺失 wza 基因的突变体 Δwza 分泌的多糖较少,失去了荚膜结构。Δwza 表现出增强的自凝集、生物膜形成和对真核细胞的粘附,而互补菌株 C-Δwza 部分恢复了表型。转录组分析显示 Δwza 中有几个差异表达基因 (DEGs),包括上调的外膜蛋白和参与肽聚糖生物合成的蛋白质,表明 wza 缺失影响副猪嗜血杆菌的细胞壁稳态。转录组分析揭示了非编码 RNA 在 DEGs 调控中的作用。此外,在 Δwza 中上调了一种新的与毒力相关的三聚体自转运蛋白 VtaA31。它负责增强自凝集,但不是 Δwza 中增强的生物膜形成和对真核细胞的粘附。总之,这些数据表明 wza 影响多个基因的表达,特别是与细胞壁合成相关的基因。此外,它们提供了证据表明 vtaA31 参与了副猪嗜血杆菌的自凝集。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb70/11460128/a463d6580875/13567_2024_1387_Fig1_HTML.jpg

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