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意大利中部一家肉类加工厂中持续存在的菌株:利用全基因组测序以及体外黏附和侵袭试验来解读它们的毒力潜力。

Strains Persisting in a Meat Processing Plant in Central Italy: Use of Whole Genome Sequencing and In Vitro Adhesion and Invasion Assays to Decipher Their Virulence Potential.

作者信息

Schiavano Giuditta Fiorella, Guidi Fabrizia, Pomilio Francesco, Brandi Giorgio, Salini Romolo, Amagliani Giulia, Centorotola Gabriella, Palma Francesco, Felici Martina, Lorenzetti Cinzia, Blasi Giuliana

机构信息

Dipartimento di Studi Umanistici, Università degli Studi di Urbino "Carlo Bo", Via Bramante, 17, 61029 Urbino, Italy.

Istituto Zooprofilattico Sperimentale dell'Abruzzo e del Molise G. Caporale, Laboratorio Nazionale di Riferimento per Listeria Monocytogenes, Via Campo Boario, 64100 Teramo, Italy.

出版信息

Microorganisms. 2023 Jun 26;11(7):1659. doi: 10.3390/microorganisms11071659.

Abstract

In this study, we used both a WGS and an in vitro approach to study the virulence potential of nine () strains belonging to genetic clusters persisting in a meat processing plant in Central Italy. The studied clusters belonged to CC1-ST1, CC9-ST9, and CC218-ST2801. All the CC1 and CC218 strains presented the same accessory virulence genes (LIPI-3, gltA, gltB, and aut_IVb). CC1 and CC9 strains presented a gene profile similarity of 22.6% as well as CC9 and CC218 isolates. CC1 and CC218 showed a similarity of 45.2% of the same virulence profile. The hypervirulent strains of lineage I (CC1 and CC218) presented a greater ability to adhere and invade Caco-2 cells than hypovirulent ones (CC9). CC1 strains were significantly more adhesive and invasive compared with CC9 and CC218 strains, although these last CCs presented the same accessory virulence genes. No statistically significant difference was found comparing CC218 with CC9 strains. This study provided for the first time data on the in vitro adhesiveness and invasiveness of CC218-ST2801 and added more data on the virulence characteristics of CC1 and CC9. What we observed confirmed that the ability of to adhere to and invade human cells in vitro is not always decipherable from its virulence gene profile.

摘要

在本研究中,我们采用全基因组测序(WGS)和体外实验方法,研究了意大利中部一家肉类加工厂中持续存在的9株属于不同基因簇的()菌株的潜在毒力。所研究的基因簇属于CC1-ST1、CC9-ST9和CC218-ST2801。所有CC1和CC218菌株都具有相同的辅助毒力基因(LIPI-3、gltA、gltB和aut_IVb)。CC1和CC9菌株以及CC9和CC218分离株的基因图谱相似度为22.6%。CC1和CC218在相同毒力图谱方面的相似度为45.2%。I系高毒力菌株(CC1和CC218)比低毒力菌株(CC9)表现出更强的黏附和侵袭Caco-2细胞的能力。与CC9和CC218菌株相比,CC1菌株的黏附性和侵袭性明显更强,尽管后两者具有相同的辅助毒力基因。比较CC218和CC9菌株未发现统计学上的显著差异。本研究首次提供了关于CC218-ST2801体外黏附性和侵袭性的数据,并增加了关于CC1和CC9毒力特征的更多数据。我们的观察结果证实,体外黏附和侵袭人类细胞的能力并不总是能从其毒力基因图谱中推断出来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad12/10383671/6c4e1f282905/microorganisms-11-01659-g001.jpg

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