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基于差异基因表达分析的实时荧光定量PCR检测活的非可培养霍乱弧菌

Detection of VBNC Vibrio cholerae by RT-Real Time PCR based on differential gene expression analysis.

作者信息

Casasola-Rodríguez Beatriz, Ruiz-Palacios Guillermo M, Pilar Ramos-Cervantes, Losano Luis, Ignacio Monje-Ramírez, Orta de Velásquez María Teresa

机构信息

Coordinación de Ingeniería Ambiental, Instituto de Ingeniería, Universidad Nacional Autónoma de México, Av. Universidad No. 3000, Ciudad universitaria, C.P. 04510 CDMX, México.

Departamento de Infectología, Instituto Nacional de Ciencias Médicas y Nutrición Salvador Zubirán, Vasco de Quiroga 15, Belisario Domínguez Sección XVI, 14080 Tlalpan, CDMX, México.

出版信息

FEMS Microbiol Lett. 2018 Aug 1;365(15). doi: 10.1093/femsle/fny156.

Abstract

The recognition of the viable but non-culturable (VBNC) state of pathogenic bacteria has brought with it many questions to answer related to the need to detect and quantify viable bacteria in the environment in an accurate way. To assess viability of Vibrio cholerae, we developed a RT-Real Time PCR technique based on differential expression analysis from mRNA deep sequencing data. We compared two induction conditions to achieve the VBNC state: a bacterial suspension induced by artificial seawater at 4°C, and the addition of 3',5'-cyclic diguanylic acid. The evaluation of the up-regulated genes in the induced bacterial samples was compared with a fresh culture in the mid-exponential phase. The data analysis was performed with the NOISeq R-package and revealed 17 up-regulated genes for induction condition I and 22 up-regulated genes for induction condition II. Only one region was found to be up-regulated for both induction conditions. The VCA0656 gene related to the aminoimidazole riboside kinase protein was detected as the most up-regulated region and used as a genetic marker to precisely detect the VBNC state in combination with the RT-Real Time PCR technique. This approach describes a novel method to differentiate the VBNC state of V. cholerae in water samples.

摘要

对病原菌活的但不可培养(VBNC)状态的认识带来了许多需要解答的问题,这些问题与准确检测和量化环境中活菌的必要性相关。为了评估霍乱弧菌的生存能力,我们基于mRNA深度测序数据的差异表达分析开发了一种RT-实时PCR技术。我们比较了两种诱导条件以实现VBNC状态:在4°C下用人造海水诱导的细菌悬液,以及添加3',5'-环二鸟苷酸。将诱导细菌样品中上调基因的评估与处于指数中期的新鲜培养物进行比较。使用NOISeq R包进行数据分析,结果显示诱导条件I有17个上调基因,诱导条件II有22个上调基因。两种诱导条件下仅发现一个区域上调。与氨基咪唑核糖苷激酶蛋白相关的VCA0656基因被检测为上调最明显的区域,并用作遗传标记,与RT-实时PCR技术结合以精确检测VBNC状态。该方法描述了一种区分水样中霍乱弧菌VBNC状态的新方法。

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