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一步法逆转录数字PCR用于可靠定量不同的番木瓜斑驳病毒基因型

One-Step Reverse-Transcription Digital PCR for Reliable Quantification of Different Pepino Mosaic Virus Genotypes.

作者信息

Mehle Nataša, Gregur Larisa, Bogožalec Košir Alexandra, Dobnik David

机构信息

Department of Biotechnology and Systems Biology, National Institute of Biology, Večna pot 111, 1000 Ljubljana, Slovenia.

Goričko Nature Park Public Institute, Grad 191, 9264 Grad, Slovenia.

出版信息

Plants (Basel). 2020 Mar 4;9(3):326. doi: 10.3390/plants9030326.

Abstract

In recent years, pepino mosaic virus (PepMV) has rapidly evolved from an emerging virus to an endemic pathogen, as it causes significant loses to tomato crops worldwide. At present, the main control strategy for prevention of PepMV disease in tomato production remains based on strict hygiene measures. To prevent damage caused by PepMV, cross-protection is used in some countries. Reliable characterisation, detection and quantification of the pathogen are vital for disease control. At present, reverse-transcription real-time quantitative polymerase chain reaction (RT-qPCR) is generally used for this purpose. However, quantitative use of RT-qPCR is linked to standardised reference materials, which are not available for PepMV. In addition, many factors can influence RT-qPCR efficiencies and lead to lower accuracy of the quantification. In this study, well-characterised PepMV-genotype-specific RT-qPCR assays were transferred to two digital PCR (dPCR) platforms. dPCR-based assays allow absolute quantification without the need for standard curves, and due to the binary nature of the reaction, dPCR also overcomes many of the other drawbacks of RT-qPCR. We have shown that these newly developed and validated PepMV-genotype-specific dPCR assays are suitable candidates for higher-order methods for quantification of PepMV RNA, as they show lower measurement variability, with sensitivity and specificity comparable to RT-qPCR.

摘要

近年来,番茄褪绿斑驳病毒(PepMV)已迅速从一种新出现的病毒演变为一种地方性病原菌,因为它给全球番茄作物造成了重大损失。目前,番茄生产中预防PepMV病害的主要控制策略仍然基于严格的卫生措施。为防止PepMV造成损害,一些国家采用了交叉保护措施。对病原体进行可靠的鉴定、检测和定量对于病害控制至关重要。目前,逆转录实时定量聚合酶链反应(RT-qPCR)通常用于此目的。然而,RT-qPCR的定量使用与标准化参考材料相关,而PepMV没有可用的标准化参考材料。此外,许多因素会影响RT-qPCR的效率并导致定量准确性降低。在本研究中,将特征明确的PepMV基因型特异性RT-qPCR检测方法转移到两个数字PCR(dPCR)平台上。基于dPCR的检测方法无需标准曲线即可进行绝对定量,并且由于反应的二元性质,dPCR还克服了RT-qPCR的许多其他缺点。我们已经表明,这些新开发并经过验证的PepMV基因型特异性dPCR检测方法是用于PepMV RNA定量的高阶方法的合适候选方法,因为它们显示出较低的测量变异性,其灵敏度和特异性与RT-qPCR相当。

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