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国家自然科学基金(31272540)

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耶尔森菌不同成膜基因对其生物膜形成的影响被引量:3
2013年
【目的】研究耶尔森菌生物膜的检测方法和不同成膜基因,为探讨耶尔森菌不同成膜基因对其生物膜形成的影响提供参考。【方法】应用静置试管悬浮菌膜观察、微孔96孔聚苯乙烯板结晶紫染色法、刚果红平板培养3种方法,检测了25株耶尔森菌生物膜的形成情况;用PCR技术检测了生物膜形成相关基因metE、ompR、rpoS、rhaH在不同菌株中的分布情况,并分析了生物膜形成与这些基因的相关性。【结果】静置试管悬浮菌膜观察、微孔96孔聚苯乙烯板结晶紫染色法和刚果红平板培养法3种方法的耶尔森菌生物膜阳性检出率分别为60%,56%和68%,3种方法检测均为阳性的菌株有11株,均为阴性的有5株,一致率为64%;4种成膜基因在25株耶尔森菌中的检出率分别为52%,56%,32%和24%。利用SPSS分析了4种基因对生物膜形成的影响,其中metE、ompR基因是生物膜形成的主效应因子,二者的累计方差贡献率达到75.149%。【结论】刚果红平板培养法检测生物膜最敏感;metE、ompR、rpoS、rhaH4种基因对生物膜的形成均有不同程度的影响,其中metE、ompR与生物膜的形成密切相关。
李霞李艺黄金海张宏伟夏乙禾刘萌萌
关键词:耶尔森菌生物膜
Porcine FcεRI Mediates Porcine Reproductive and Respiratory Syndrome Virus Multiplication and Regulates the Inflammatory Reaction被引量:3
2018年
Porcine reproductive and respiratory syndrome virus(PRRSV) shows characteristic antibody-dependent enhancement(ADE) of infection and causes porcine systemic inflammation, which is similar to a type I allergic reaction; however, the role of porcine FceεRI in ADE is still unclear. In this study, the expression of different Fc receptors(Fc Rs) on macrophages was investigated in a PRRSV 3D4/21 cell infection model in the presence or absence of PRRSV antibody. The transcription level of Fcc II and FceεRI was significantly up-regulated under PRRSV-antibody complex infection. Internalization and proliferation of PRRSV were promoted by the ADE mechanism when FceεRI was expressed in permissive 3D4/21 cells and the non-permissive cell line HEK 293T. Transcriptome sequencing data showed that the expression levels of AKT,ERK and other signal molecules in the anti-inflammatory pathway were significantly increased, especially in the cells infected with the PRRSV-antibody immune complex. Inflammatory regulatory molecules such as PLA2G6, LOX, TRPM8 and TRPM4 were significantly up-regulated following PRRSV infection but significantly down-regulated in the cells infected with the PRRSV-antibody immune complex. Our results demonstrated that FceεRI could be involved in PRRSV ADE, the antigen presenting process and regulation of the inflammatory response during PRRSV infection, which provides new insights into PRRSV infection mediated by FceεRI and the PRRSV-antibody immune complex.
Peidian ShiLilin ZhangJiashun WangDong LuYi LiJie RenMenglu ShenLei ZhangJinhai Huang
关键词:FCC症候群PRRSV
The C/EBPβ-Dependent Induction of TFDP2 Facilitates Porcine Reproductive and Respiratory Syndrome Virus Proliferation被引量:1
2021年
Porcine reproductive and respiratory syndrome(PRRS) is an important infectious disease caused by porcine reproductive and respiratory syndrome virus(PRRSV), leading to significant economic losses in swine industry worldwide. Although several studies have shown that PRRSV can affect the cell cycle of infected cells, it is still unclear how it manipulates the cell cycle to facilitate its proliferation. In this study, we analyzed the mRNA expression profiles of transcription factors in PRRSV-infected 3D4/21 cells by RNA-sequencing. The result shows that the expression of transcription factor DP2(TFDP2) is remarkably upregulated in PRRSV-infected cells. Further studies show that TFDP2 contributes to PRRSV proliferation and the PRRSV nucleocapsid(N) protein induces TFDP2 expression by activating C/EBPb. TFDP2 positively regulates cyclin A expression and triggers a less proportion of cells in the S phase, which contributes to PRRSV proliferation. This study proposes a novel mechanism by which PRRSV utilizes host protein to regulate the cell cycle to favor its infection. Findings from this study will help us for a better understanding of PRRSV pathogenesis.
Min ZhuXiaoyang LiRuiqi SunPeidian ShiAiping CaoLilin ZhangYanyu GuoJinhai Huang
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