RPB0293

Pathogen Description

Target Pathogen Pathogen Name NCBI Taxonomy ID Order Family Genus Species Pathogen type
Stenotrophomonas maltophilia Stenotrophomonas maltophilia, Pseudomonas maltophilia, Xanthomonas maltophilia 40324 Xanthomonadales Xanthomonadaceae Stenotrophomonas Stenotrophomonas maltophilia Bacterium

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
RPA\F CAAGCGTTACTCGGAATTACTGGGCGTAA 29 10 μM 48.28 62.32 8941.87 \
RPA\R CCAAATTGCACCCAACATCCAGTTCGCATCG 31 10 μM 51.61 65.73 9369.16 \

Gene Description

Target Gene GenBank ID
N gene \

Assay Description

Application Assay Primer Designing Software Reaction Time(min) Assay Temperature(℃) Readout System(s) Limit of Detection(LoD) Sensitivity(%) Specificity(%)
rapidity, simplicity, high sensitivity and specificity, and decreased need for complex large-scale instrumentation. RPA-CRISPR\Cas12a platform Geneious 9.0.2 software. 30 min 37°C CRISPR\Cas12a platform 3 × 10° copies·μL-1 \ \

Publication Description

Year of Publication Title Author(s) Journal PMID DOI
2024 One-Pot Assay for Rapid Detection of Stenotrophomonas maltophilia by RPA-CRISPR\Cas12a Jiangli Zhang,Ling Qin,Yingying Chang,Yulong He,Weichao Zhao,Yongyou Zhao,Yanan Ding,Jin Gao,Xiting Zhao ACS Synthetic Biology 39358950 10.1021/acssynbio.4c00481

One-Pot Assay for Rapid Detection of Stenotrophomonas maltophilia by RPA-CRISPR\Cas12a

Author(s):

Jiangli Zhang,Ling Qin,Yingying Chang,Yulong He,Weichao Zhao,Yongyou Zhao,Yanan Ding,Jin Gao,Xiting Zhao

Journal:

ACS Synthetic Biology

Year:

2024

Abstract:

Stenotrophomonas maltophilia (S. maltophilia, SMA) is a common opportunistic pathogen that poses a serious threat to the food industry and human health. Traditional detection methods for SMA are time-consuming, have low detection rates, require complex and expensive equipment and professional technical personnel for operation, and are unsuitable for on-site detection. Therefore, establishing an efficient on-site detection method has great significance in formulating appropriate treatment strategies and ensuring food safety. In the present study, a rapid one-pot detection method was established for SMA using a combination of Recombinase Polymerase Amplification (RPA) and CRISPR/Cas12a, referred to as ORCas12a-SMA (one-pot RPA-CRISPR/Cas12a platform). In the ORCas12a-SMA detection method, all components were added into a single tube simultaneously to achieve one-pot detection and address the problems of nucleic acid cross-contamination and reduced sensitivity caused by frequent cap opening during stepwise detection. The ORCas12a-SMA method could detect at least 3 × 10° copies·μL-1 of SMA genomic DNA within 30 min at 37 °C. Additionally, this method exhibited sensitivity compared to the typical two-step RPA-CRISPR/Cas12a method. Overall, the ORCas12a-SMA detection offered the advantages of rapidity, simplicity, high sensitivity and specificity, and decreased need for complex large-scale instrumentation. This assay is the first application of the one-pot platform based on the combination of RPA and CRISPR/Cas12a in SMA detection and is highly suitable for point-of-care testing. It helps reduce losses in the food industry and provides assistance in formulating timely and appropriate antimicrobial treatment plans.