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利用包裹油层的细菌细胞的液滴数字 PCR 技术对霍乱弧菌进行活菌非可培养状态的绝对定量分析。

Absolute Quantification of Viable but Nonculturable Vibrio cholerae Using Droplet Digital PCR with Oil-Enveloped Bacterial Cells.

机构信息

State Key Laboratory of Infectious Disease Prevention and Control, National Institute for Communicable Disease Control and Prevention, Chinese Center for Disease Control and Prevention, Beijing, China.

出版信息

Microbiol Spectr. 2022 Aug 31;10(4):e0070422. doi: 10.1128/spectrum.00704-22. Epub 2022 Jun 28.

Abstract

When exposed to adverse conditions, many bacterial pathogens, including Vibrio cholerae, can adapt to the environment by entering the viable but nonculturable (VBNC) state. Cells in this state cannot grow on conventional media but still survive. The VBNC state is a significant threat to aquatic safety and public health due to the enhanced ability of the bacteria to remain in the environment and escape from monitoring. Detecting and quantifying VBNC cells and distinguishing them from nonviable cells is necessary for microbiological studies and pathogen monitoring. Cell staining and microscopy are used for the observation of VBNC cells, but it is difficult to quantify VBNC cells accurately. In this study, we developed droplet digital PCR (ddPCR) with a chromosomal single-copy gene as an internal reference combined with Propidium monoazide (PMA) treatment to enumerate VBNC cells of V. cholerae. In this method, bacterial cells, but not extracted chromosomal DNA, were used directly to form oil-enveloped droplets in the ddPCR procedure. One bacterial cell possesses one copy of the chromosome. Thus, enumeration of a single-copy gene on the chromosome can be used to count VBNC cells. ddPCR showed greater accuracy and sensitivity than qPCR. This study showed that the oil-enveloped bacterial method can reduce the number of steps needed and improve the accuracy of VBNC cells quantification and has the potential to be extended to quantify bacterial VBNC cells and assess pathogen survival in the environment. The viable but nonculturable (VBNC) state of bacteria represents an important life state for their survival in adverse environments. The VBNC cells of the pathogenic bacteria in the environment and food will be a potential threat to public health because these pathogens cannot be found by the detection of culture. We developed a sensitive molecular method to detect and enumerate the VBNC cells of V. cholerae, which can distinguish the VBNC and dead cells, and count the VBNC cells in the sample without the step of DNA extraction from cells. It can be used to improve the sensitivity of pathogen detection in the surveillance, risk assessment of environment and food contamination, and outbreak warning. The accurate identification and numeration of VBNC cells will also facilitate the microbiological and genetic studies on the development, adaptation, resuscitation, and elimination of the VBNC state.

摘要

当暴露于不利条件时,许多细菌病原体,包括霍乱弧菌,可以通过进入存活但非可培养(VBNC)状态来适应环境。处于这种状态的细胞不能在常规培养基上生长,但仍能存活。由于细菌在环境中保持活力并逃避监测的能力增强,VBNC 状态对水生安全和公共卫生构成了重大威胁。检测和定量 VBNC 细胞并将其与非存活细胞区分开来,对于微生物学研究和病原体监测是必要的。细胞染色和显微镜检查用于观察 VBNC 细胞,但很难准确地定量 VBNC 细胞。在这项研究中,我们开发了一种带有染色体单拷贝基因作为内参的液滴数字 PCR(ddPCR),并结合 Propidium monoazide(PMA)处理来计数霍乱弧菌的 VBNC 细胞。在这种方法中,直接使用细菌细胞,而不是提取的染色体 DNA,在 ddPCR 过程中形成油包被的液滴。一个细菌细胞拥有一个染色体拷贝。因此,对染色体上单个拷贝基因的计数可用于计数 VBNC 细胞。ddPCR 比 qPCR 具有更高的准确性和灵敏度。这项研究表明,油包被细菌方法可以减少所需的步骤数量,提高 VBNC 细胞定量的准确性,并有可能扩展到定量细菌 VBNC 细胞和评估环境中病原体的存活。细菌的存活但非可培养(VBNC)状态代表了它们在不利环境中生存的重要生命状态。环境和食品中致病性细菌的 VBNC 细胞将对公众健康构成潜在威胁,因为这些病原体无法通过培养检测发现。我们开发了一种灵敏的分子方法来检测和定量霍乱弧菌的 VBNC 细胞,该方法可以区分 VBNC 和死亡细胞,并在无需从细胞中提取 DNA 的情况下对样品中的 VBNC 细胞进行计数。它可用于提高病原体检测的灵敏度,以监测、评估环境和食品污染的风险以及爆发预警。VBNC 细胞的准确识别和计数也将有助于 VBNC 状态的发展、适应、复苏和消除的微生物学和遗传学研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c86/9430983/7d72c5b8d636/spectrum.00704-22-f001.jpg

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