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Andreason, S. A.

Publications and source records attributed to Andreason, S. A..

2 recordsLinked to original sources

Genome-guided, field-deployable loop-mediated isothermal amplification (LAMP) assay for specific detection of Dickeya dadantii

Potatoes, among the most economically significant crops worldwide, are susceptible to various plant pathogens that significantly impact their propagation, production, storage, and distribution. Soft rot disease, caused primarily by Dickeya and Pectobacterium, results in substantial economic losses to the agricultural industry annually. In this study, we developed a rapid, reliable, and field-deployable loop-mediated isothermal amplification (LAMP) assay for detecting D. dadantii, a common soft rot causing bacteria. The D. dadantii-specific LAMP primers were designed targeting a highly conserved genomic region within D. dadantii, the TetR/AcrR family transcriptional regulator CDS and its flanking sequences. This assay was thoroughly validated with the members of inclusivity (nine strains of D. dadantii) and exclusivity panels (85 strains, including all Dickeya species, related taxa, and host DNA), detecting no false positives or negatives. The limit of detection (LOD) was established by performing assays with 10-fold serially diluted pure gDNA of D. dadantii and gDNA spiked with host crude extract; the assay detected the target pathogen down to 1 pg (188 copies) without being adversely affected by the host crude extract. The developed LAMP assay specifically detected the target pathogen in infected plant materials. Additional multi-operator blind and multi-instrument tests were conducted to assess the assays robustness and applicability, consistently yielding accurate results without false positives or negatives. These findings demonstrate the assays potential utility for biosecurity, routine diagnostics, and epidemiological studies.

microbiology↗

Loop-mediated Isothermal Amplification (LAMP) assay for reliable detection of Xanthomonas axonopodis pv. vasculorum

Xanthomonas axonopodis pv. vasculorum (Xav), the causative agent of sugarcane gumming disease, represents a significant threat to global sugarcane production due to its systemic and destructive nature. Despite the economic implications, a field-deployable, Xav-specific diagnostic tool has not been developed. This resulted in a loop-mediated isothermal amplification (LAMP) assay targeting the pelL gene, unique to Xav strains, as a rapid and precise diagnostic assay. The selection of the pelL gene was informed by comprehensive in silico analyses of Xav genomes and related Xanthomonas species and other close relatives. Validation against the NCBI GenBank database and internally sequenced genomes confirmed the genes exclusivity to Xav. Subsequent primers for both endpoint PCR and LAMP assays were designed using the pelL gene region. The LAMP assay underwent extensive testing against inclusivity and exclusivity panels. Use of exclusivity panel, comprising 81 strains from related species, other bacterial genera, and host genomes, demonstrated the assays specificity with no false positives. The assay exhibited a detection limit of 1 pg, and its effectiveness was unimpeded by crude host lysate (sugarcane). Further validation through multi-device and multi-operator testing underscored the assays 100% reproducibility and robustness. Application to infected plant samples resulted in the detection of all infected specimens without any false positives or negatives. This novel LAMP assay is accurate and reliable tool for Xav detection, with promising applications in routine diagnostics, biosecurity measures, microbial forensics, and epidemiological research.

plant biology↗