首页> 外文OA文献 >Transfer of the Core Region Genes of the Yersinia enterocolitica WA-C Serotype O:8 High-Pathogenicity Island to Y. enterocolitica MRS40, a Strain with Low Levels of Pathogenicity, Confers a Yersiniabactin Biosynthesis Phenotype and Enhanced Mouse Virulence
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Transfer of the Core Region Genes of the Yersinia enterocolitica WA-C Serotype O:8 High-Pathogenicity Island to Y. enterocolitica MRS40, a Strain with Low Levels of Pathogenicity, Confers a Yersiniabactin Biosynthesis Phenotype and Enhanced Mouse Virulence

机译:小肠结肠炎耶尔森氏菌WA-C血清型O:8高致病性岛的核心区域基因转移到小肠结肠炎耶尔森氏菌MRS40(一种低致病性菌株)赋予耶尔西菌素生物合成表型和增强的小鼠毒力

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摘要

The high-pathogenicity island (HPI) of yersiniae encodes an iron uptake system represented by its siderophore yersiniabactin (Ybt). The HPI is present in yersiniae with high levels of pathogenicity—i.e., Yersinia pestis, Y. pseudotuberculosis, and Y. enterocolitica biogroup (BG) 1B—but absent in Y. enterocolitica strains with low (BG 2 to 5) and no (BG 1A) levels of pathogenicity and has been shown to be an important virulence factor. Comparison of the HPI in Y. enterocolitica (Yen-HPI) and that in Y. pestis and Y. pseudotuberculosis revealed that, in contrast to genes of the variable region, genes of the core region (genes irp9 to fyuA) are highly homologous. In the present work the Yen-HPI core genes were rescued from the chromosome of Y. enterocolitica WA-C (BG 1B, serotype O:8) using the FRT-FLP recombinase system. Transfer of the resulting plasmid pCP1 into the siderophore-deficient strain Y. enterocolitica NF-O (BG 1A) led to no halo on siderophore indicator chrome azurol S (CAS) agar. Transfer of pCP1 into the Y. enterocolitica strain MRS40 (serotype O:9, BG 2; phenotype, CAS negative) led to a CAS halo larger than that of parental strain WA-C, indicating high Ybt production. pCP1 was highly unstable in iron-deficient medium, and no enhanced mouse virulence conferred by MRS40 carrying pCP1 could be detected. To overcome the problem of instability, pCP1 was integrated into the chromosome of MRS40, leading to the formation of a CAS halo comparable to that seen with WA-C and correspondingly to increased mouse virulence. Thus, the core genes of Yen-HPI are sufficient to confer a positive CAS phenotype and mouse virulence to Y. enterocolitica MRS40, BG 2, but are insufficient to confer this phenotype to Y. enterocolitica NF-O, BG 1A.
机译:耶尔森氏菌的高致病性岛(HPI)编码由铁载体耶尔森氏菌素(Ybt)代表的铁吸收系统。 HPI存在于耶尔森氏菌中,具有高水平的致病性,即鼠疫耶尔森氏菌,假结核耶尔森氏菌和小肠结肠炎耶尔森氏菌生物群(BG)1B,但在肠炎耶尔森氏菌菌株中低(BG 2至5)且无(BG) 1A)的致病性水平已被证明是重要的毒力因子。比较小肠结肠炎耶尔森氏菌(Yen-HPI)和鼠疫耶尔森氏菌和假结核耶尔森氏菌中的HPI,发现与可变区的基因相反,核心区的基因(基因irp9至fyuA)高度同源。在本工作中,使用FRT-FLP重组酶系统从小肠结肠炎耶尔森氏菌WA-C(BG 1B,血清型O:8)染色体中拯救了Yen-HPI核心基因。将所得质粒pCP1转移至铁载体缺乏菌株小肠结肠炎耶尔森氏菌NF-O(BG 1A)中,铁载体指示剂铬天青S(CAS)琼脂上无卤素。将pCP1转移到小肠结肠炎耶尔森氏菌MRS40(血清型O:9,BG 2;表型,CAS阴性)中导致CAS晕大于亲代菌株WA-C,表明高Ybt产量。 pCP1在缺铁培养基中高度不稳定,并且无法检测到携带pCP1的MRS40所赋予的增强的小鼠毒性。为了克服不稳定性的问题,将pCP1整合到MRS40的染色体中,从而形成了与WA-C相当的CAS晕环,并相应地提高了小鼠的毒性。因此,Yen-HPI的核心基因足以赋予小肠结肠炎耶尔森氏菌MRS40,BG 2阳性的CAS表型和小鼠毒性,但不足以赋予小肠结肠炎耶尔森菌NF-O BG 1A这种表型。

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