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物种引物:一种生物信息学流程,致力于设计用于定量细菌物种的qPCR引物。

SpeciesPrimer: a bioinformatics pipeline dedicated to the design of qPCR primers for the quantification of bacterial species.

作者信息

Dreier Matthias, Berthoud Hélène, Shani Noam, Wechsler Daniel, Junier Pilar

机构信息

Agroscope, Bern, Switzerland.

Laboratory of Microbiology, University of Neuchâtel, Neuchâtel, Switzerland.

出版信息

PeerJ. 2020 Feb 18;8:e8544. doi: 10.7717/peerj.8544. eCollection 2020.

Abstract

BACKGROUND

Quantitative real-time PCR (qPCR) is a well-established method for detecting and quantifying bacteria, and it is progressively replacing culture-based diagnostic methods in food microbiology. High-throughput qPCR using microfluidics brings further advantages by providing faster results, decreasing the costs per sample and reducing errors due to automatic distribution of samples and reagents. In order to develop a high-throughput qPCR approach for the rapid and cost-efficient quantification of microbial species in complex systems such as fermented foods (for instance, cheese), the preliminary setup of qPCR assays working efficiently under identical PCR conditions is required. Identification of target-specific nucleotide sequences and design of specific primers are the most challenging steps in this process. To date, most available tools for primer design require either laborious manual manipulation or high-performance computing systems.

RESULTS

We developed the SpeciesPrimer pipeline for automated high-throughput screening of species-specific target regions and the design of dedicated primers. Using SpeciesPrimer, specific primers were designed for four bacterial species of importance in cheese quality control, namely , , and . Selected primers were first evaluated and subsequently using DNA from pure cultures of a variety of strains found in dairy products. Specific qPCR assays were developed and validated, satisfying the criteria of inclusivity, exclusivity and amplification efficiencies.

CONCLUSION

In this work, we present the SpeciesPrimer pipeline, a tool to design species-specific primers for the detection and quantification of bacterial species. We use SpeciesPrimer to design qPCR assays for four bacterial species and describe a workflow to evaluate the designed primers. SpeciesPrimer facilitates efficient primer design for species-specific quantification, paving the way for a fast and accurate quantitative investigation of microbial communities.

摘要

背景

定量实时聚合酶链反应(qPCR)是一种成熟的检测和定量细菌的方法,在食品微生物学中它正逐渐取代基于培养的诊断方法。使用微流控技术的高通量qPCR通过提供更快的结果、降低每个样本的成本以及减少由于样本和试剂的自动分配而产生的误差,带来了更多优势。为了开发一种高通量qPCR方法,用于快速且经济高效地定量复杂系统(如发酵食品,例如奶酪)中的微生物种类,需要在相同的PCR条件下高效运行的qPCR检测的初步设置。鉴定靶标特异性核苷酸序列和设计特异性引物是这个过程中最具挑战性的步骤。迄今为止,大多数可用的引物设计工具要么需要繁琐的手动操作,要么需要高性能计算系统。

结果

我们开发了SpeciesPrimer流程,用于自动高通量筛选物种特异性靶标区域并设计专用引物。使用SpeciesPrimer,为奶酪质量控制中重要的四种细菌物种设计了特异性引物,即 、 、 和 。首先对选定的引物进行了评估,随后使用来自乳制品中发现的各种菌株的纯培养物的DNA进行了评估。开发并验证了特异性qPCR检测方法,满足了包容性、排他性和扩增效率的标准。

结论

在这项工作中,我们展示了SpeciesPrimer流程,这是一种用于设计物种特异性引物以检测和定量细菌物种的工具。我们使用SpeciesPrimer为四种细菌物种设计qPCR检测方法,并描述了评估设计引物的工作流程。SpeciesPrimer有助于高效设计用于物种特异性定量的引物,为快速准确地定量研究微生物群落铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a03c/7034379/a0025f6428ca/peerj-08-8544-g001.jpg

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