RPB0069

Pathogen Description

Target Pathogen Pathogen Name NCBI Taxonomy ID Order Family Genus Species Pathogen type
SARS-CoV-2 SARS-CoV-2, 2019-nCoV, COVID-19, COVID-19 virus, SARS2, Wuhan coronavirus, Human coronavirus 2019, COVID19, HCoV-19, SARS-2, SARS-CoV4 2697049 Nidovirales Coronaviridae Betacoronavirus Severe acute respiratory syndrome-related coronavirus virus

Primer Description

Primer Name Sequence(5'-3') Length(bp) Primer Final Concentration(μM) GC Content(%) Predicted Melting Temperature(℃) Molecular Weight(g/moles) Positions in GenBank accession number
O-Primer 1/2R TAACTCATATTGTAGAAGAGTAGAAG 26 \ 30.8 48.28 8066.35 \
O-Primer 2F AGCCAACTCCTATGATCTCCCTATTG 26 \ 46.2 57.77 7841.16 \
O-Probe 1A-2 AACCCACAGGGCAATAGGGAGATCATAGGAGTTGGCT 37 \ 51.4 68.8 11496.53 \
O-Probe 1B TAACTCATATTGTAGAAGAGTAGAAGTTAAGTGTAA 36 \ 27.8 53.67 11194.38 \

Gene Description

Target Gene GenBank ID
ORF1ab gene NC_045512.2

Assay Description

Application Assay Primer Designing Software Reaction Time(min) Assay Temperature(℃) Readout System(s) Limit of Detection(LoD) Sensitivity(%) Specificity(%)
\ \ Primer Premier 5.0 15 37 L/RPA 10¹ viral RNA copies per reaction 100 100

Publication Description

Year of Publication Title Author(s) Journal PMID DOI
2021 A Ligation/Recombinase Polymerase Amplification Assay for Rapid Detection of SARS-CoV-2. Wang, Pei; Ma, Chao; Zhang, Xue; Chen, Lizhan; Yi, Longyu; Liu, Xin; Lu, Qunwei; Cao, Yang; Gao, Song; Front Cell Infect Microbiol 34123877 10.3389/fcimb.2021.680728

A Ligation/Recombinase Polymerase Amplification Assay for Rapid Detection of SARS-CoV-2.

Author(s):

Wang, Pei; Ma, Chao; Zhang, Xue; Chen, Lizhan; Yi, Longyu; Liu, Xin; Lu, Qunwei; Cao, Yang; Gao, Song;

Journal:

Front Cell Infect Microbiol

Year:

2021

Abstract:

The pandemic of COVID-19 caused by severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2) has led to more than 117 million reported cases and 2.6 million deaths. Accurate diagnosis technologies are vital for controlling this pandemic. Reverse transcription (RT)-based nucleic acid detection assays have been developed, but the strict sample processing requirement of RT has posed obstacles on wider applications. This study established a ligation and recombinase polymerase amplification (L/RPA) combined assay for rapid detection of SARS-CoV-2 on genes N and ORF1ab targeting the specific biomarkers recommended by the China CDC. Ligase-based strategies usually have a low-efficiency problem on RNA templates. This study has addressed this problem by using a high concentration of the T4 DNA ligase and exploiting the high sensitivity of RPA. Through selection of the ligation probes and optimization of the RPA primers, the assay achieved a satisfactory sensitivity of 101 viral RNA copies per reaction, which was comparable to RT-quantitative polymerase chain reaction (RT-qPCR) and other nucleic acid detection assays for SARS-CoV-2. The assay could be finished in less than 30 min with a simple procedure, in which the requirement for sophisticated thermocycling equipment had been avoided. In addition, it avoided the RT procedure and could potentially ease the requirement for sample processing. Once validated with clinical samples, the L/RPA assay would increase the practical testing availability of SARS-CoV-2. Moreover, the principle of L/RPA has an application potential to the identification of concerned mutations of the virus.