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通过 Tn5 转座子突变文库鉴定禽致病性大肠杆菌中的新型生物膜基因。

Identification of novel biofilm genes in avian pathogenic Escherichia coli by Tn5 transposon mutant library.

机构信息

Anhui Province Key Laboratory of Veterinary Pathobiology and Disease Control, Anhui Agricultural University, 130 Changjiangxilu, Hefei, 230036, Anhui, People's Republic of China.

Shanghai Veterinary Research Institute, The Chinese Academy of Agricultural Sciences (CAAS), 518 Ziyue Road, Shanghai, 200241, People's Republic of China.

出版信息

World J Microbiol Biotechnol. 2022 Jun 11;38(8):130. doi: 10.1007/s11274-022-03314-4.

Abstract

Avian pathogenic Escherichia coli (APEC) is the main pathogens that inflict the poultry industry. Biofilm as the pathogenic factors of APEC, which can enhance the anti-host immune system of APEC and improve its survival in the environment. In order to screen for new genes related to APEC biofilm. The APEC strain APEC81 was used to construct a mutant library by Tn5 insertion mutagenesis. Moreover the 28 mutant strains with severely weakened biofilm were successfully screened from 1500 mutant strains by crystal violet staining, in which 17 genes were obtained by high-efficiency thermal asymmetric interlaced PCR. The reported genes include 3 flagella genes (fliS, fliD, and fliR), 4 curli fimbriae genes (csgD, csgA, csgF, and csgG) and 3 type 1 fimbriae genes (fimA, fimD, and fimC). The novel genes include 3 coenzyme genes (gltA, bglX, and mltF) and 4 putative protein genes (yehE, 07045, 11735, 11255). To investigate whether these 17 genes co-regulate the biofilm, the 17 identified genes were deleted from APEC strain APEC81. The results showed that except for the 11735 and 11255 genes, the deletion of 15 genes significantly reduced the biofilm formation ability of APEC81 (P < 0.05). The result of rdar (red, dry and rough) colony morphology showed that curli fimbriae genes (csgD, csgA, csgF, and csgG) and other functional genes (fimC, glxK, yehE, 07045, and 11255) affected the colony morphology. In particular, the hypothetical protein YehE had the greatest influence on the biofilm. It was predicted to have the same structure as the type 1 fimbria protein. When yehE was deleted, the fimE transcription was up-regulated, and the fimA and fimB transcription were down-regulated, resulting in a decrease in type 1 fimbriae. Hence, the yehE mutant significantly reduced the biofilm and the adhesion and invasion ability to cells (P < 0.05). This study identified 5 novel genes (gltA, bglX, mltF, yehE, and 07045) related to biofilm formation and confirmed that yehE affects biofilm formation by type 1 fimbriae, which will benefit further study of the mechanism of biofilm regulation in APEC.

摘要

禽致病性大肠杆菌(APEC)是家禽养殖业的主要病原体。生物膜作为 APEC 的致病因素,可以增强 APEC 的抗宿主免疫系统,并提高其在环境中的生存能力。为了筛选与 APEC 生物膜相关的新基因,本研究使用转座子插入诱变 Tn5 构建了 APEC 菌株 APEC81 的突变体文库。通过结晶紫染色,从 1500 个突变株中成功筛选出 28 株生物膜严重减弱的突变株,其中通过高效热不对称交错 PCR 获得了 17 个基因。报道的基因包括 3 个鞭毛基因(fliS、fliD 和 fliR)、4 个卷曲菌毛基因(csgD、csgA、csgF 和 csgG)和 3 个 1 型菌毛基因(fimA、fimD 和 fimC)。新发现的基因包括 3 个辅酶基因(gltA、bglX 和 mltF)和 4 个假定蛋白基因(yehE、07045、11735 和 11255)。为了研究这 17 个基因是否共同调控生物膜,本研究从 APEC 菌株 APEC81 中删除了这 17 个鉴定出的基因。结果表明,除了 11735 和 11255 基因外,15 个基因的缺失显著降低了 APEC81 的生物膜形成能力(P<0.05)。rdar(红色、干燥和粗糙)菌落形态的结果表明,卷曲菌毛基因(csgD、csgA、csgF 和 csgG)和其他功能基因(fimC、gltK、yehE、07045 和 11255)影响菌落形态。特别是假定蛋白 YehE 对生物膜的影响最大。它被预测具有与 1 型菌毛蛋白相同的结构。当 yehE 缺失时,fimE 的转录上调,而 fimA 和 fimB 的转录下调,导致 1 型菌毛减少。因此,yehE 突变显著降低了生物膜和对细胞的粘附和侵袭能力(P<0.05)。本研究鉴定了 5 个与生物膜形成相关的新基因(gltA、bglX、mltF、yehE 和 07045),并证实 yehE 通过 1 型菌毛影响生物膜形成,这将有助于进一步研究 APEC 生物膜调控机制。

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