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证据表明,应激激素皮质醇在不同的柱状黄杆菌分离株中调节生物膜形成的方式不同。

Evidence that the stress hormone cortisol regulates biofilm formation differently among Flavobacterium columnare isolates.

机构信息

Department of Pathology, Bacteriology and Poultry Diseases, Faculty of Veterinary Medicine, Ghent University, Ghent, 9000, Belgium.

Stress Physiology Research Group, Faculty of Pharmaceutical Sciences, Ghent University, Ostend, 8400, Belgium.

出版信息

Vet Res. 2019 Apr 11;50(1):24. doi: 10.1186/s13567-019-0641-3.

Abstract

The impact of cortisol on Flavobacterium columnare biofilm formation was explored. Firstly, the dynamics of biofilm formation by one highly (HV) and one low virulent (LV) F. columnare isolate with and without the stress hormone cortisol under microfluidic flow conditions was characterized. This to confirm that F. columnare cells could form biofilm under cortisol supplementation, and to compare the temporal and structural differences between different treatment groups. One trial revealed that in both isolates cell aggregates resembling biofilms occurred within 7-h post-inoculation. Consequently, cell clusters were sloughed away, followed by a rebuilding of bacterial cell aggregates, suggestive for a high spreading capacity. While the HV isolate revealed cell aggregates formed upstream at all time-points, for the LV isolate this was only seen upon cortisol supplementation. Secondly, the transcriptional effect of genes (gldK, gldL, gldM, gldN, sprA, sprE, sprT, and porV) belonging to the Type IX secretion system involved in gliding motility was investigated in planktonic and biofilm cells of a HV and LV isolate to which no, a low (LD) or high (HD) dose of cortisol was added. Significantly lower expression of gliding genes gldK, gldL, gldM and gldN, and of protein secretion regulator porV was seen in the LV isolate planktonic cells supplemented with a HD-cortisol. The LV isolate biofilm cells treated with the HD-cortisol showed a significant upregulation of sprT, encoding mobile surface adhesion important in bacterial colonization. This is the first evidence for the co-regulatory effect of cortisol on biofilm formation and F. columnare gliding gene expression.

摘要

探讨了皮质醇对柱状屈挠杆菌生物膜形成的影响。首先,在微流控流动条件下,研究了一株高毒力(HV)和一株低毒力(LV)柱状屈挠杆菌分离株在有和没有应激激素皮质醇的情况下生物膜形成的动力学。这是为了确认柱状屈挠杆菌细胞在皮质醇补充下可以形成生物膜,并比较不同处理组之间的时间和结构差异。一项试验表明,在两种分离株中,接种后 7 小时内就会出现类似生物膜的细胞聚集物。因此,细胞聚集体会脱落,然后重新形成细菌细胞聚集体,这表明其具有很强的扩散能力。虽然 HV 分离株在所有时间点都显示出上游形成细胞聚集物,但 LV 分离株仅在皮质醇补充时才出现这种情况。其次,研究了参与滑行运动的 Type IX 分泌系统相关基因(gldK、gldL、gldM、gldN、sprA、sprE、sprT 和 porV)在 HV 和 LV 分离株浮游和生物膜细胞中的转录效应,向这些细胞中添加了无、低(LD)或高(HD)剂量的皮质醇。在 LV 分离株浮游细胞中,添加 HD 皮质醇后,滑行基因 gldK、gldL、gldM 和 gldN 以及蛋白分泌调节剂 porV 的表达显著下调。用 HD 皮质醇处理的 LV 分离株生物膜细胞中,编码在细菌定植中重要的移动表面黏附的 sprT 基因显著上调。这是皮质醇对生物膜形成和柱状屈挠杆菌滑行基因表达的协同调控作用的第一个证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb82/6458827/17fcf07660e5/13567_2019_641_Fig1_HTML.jpg

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