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Efficient, Rapid, and Sensitive Detection of Plant RNA Viruses With One-Pot RT-RPA–CRISPR/Cas12a Assay

机译:具有一锅RT-RPA-CRISPR / CAS12A测定的植物RNA病毒的高效,快速和敏感的植物RNA病毒

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摘要

Most viruses that infect plants use RNA to carry their genomic information; timely and robust detection methods are crucial for efficient control of these diverse pathogens. The RNA viruses, potexvirus (Potexvirus, family Alphaflexiviridae), potyvirus (Potyvirus, family Potyviridae), and tobamovirus (Tobamovirus, family Virgaviridae) are among the most economically damaging pathogenic plant viruses, as they are highly infectious and distributed worldwide. Their infection of crop plants, alone or together with other viruses, causes severe yield losses. Isothermal nucleic acid amplification methods, such as loop-mediated isothermal amplification (LAMP), recombinase polymerase amplification (RPA), and others have been harnessed for the detection of DNA- and RNA-based viruses. However, they have a high rate of non-specific amplification and other drawbacks. The collateral activities of clustered regularly interspaced short palindromic repeats (CRISPR) and CRISPR-associated nuclease Cas systems such as Cas12 and Cas14 (which act on ssDNA) and Cas13 (which acts on ssRNA) have recently been exploited to develop highly sensitive, specific, and rapid detection platforms. Here, we report the development of a simple, rapid, and efficient RT- RPA method, coupled with a CRISPR/Cas12a-based one-step detection assay, to detect plant RNA viruses. This diagnostic method can be performed at a single temperature in less than 30 min and integrated with an inexpensive commercially available fluorescence visualizer to facilitate rapid, in-field diagnosis of plant RNA viruses. Our developed assay provides an efficient and robust detection platform to accelerate plant pathogen detection and fast-track containment strategies.
机译:感染植物的大多数病毒使用RNA携带其基因组信息;及时和鲁棒的检测方法对于有效控制这些不同病原体至关重要。 RNA病毒,potexvirus(Potexvirus,family alphafleidae),potyvirus(potyvirus,family potviridae)和tobamovirus(tobamovirus,family virgaviridae)是最经济损害的致病植物病毒之一,因为它们是高度传染性和全世界分布的。他们对其他病毒单独或一起感染作物植物,导致严重的产量损失。等温核酸扩增方法,例如环介导的等温扩增(灯),重组酶聚合酶扩增(RPA),以及其他用于检测DNA和RNA的病毒。然而,它们具有高特异性扩增和其他缺点。聚集的聚集群定期间隔的短语重复(CRISPR)和CRISPR相关的核酸酶CAS系统,如CAS12和CAS14(在SSDNA上采用的CAS14)和CAS13(在SSRNA上作用),以开发高度敏感,具体,和快速的检测平台。在这里,我们报告了一种简单,快速和高效的RTPA方法的开发,与基于CRISPR / CAS12A的一步检测测定进行耦合,以检测植物RNA病毒。该诊断方法可以在小于30分钟的单个温度下进行,并与廉价的市售荧光视觉器集成,以促进植物RNA病毒的现场诊断。我们开发的测定提供了一种高效且稳健的检测平台,可加速植物病原体检测和快速轨道遏制策略。

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