Abstract
Padlock probes (PLPs) are long oligonucleotides, whose ends are complementary to adjacent target sequences. Upon hybridization to the target, the two ends are brought into contact, allowing PLP circularization by ligation. PLPs provide extremely specific target recognition, which is followed by universal amplification and microarray detection. Since target recognition is separated from downstream processing, PLPs enable the development of flexible and extendable diagnostic systems, targeting diverse organisms. To adapt padlock technology for diagnostic purposes, we optimized PLP design to ensure high specificity and eliminating ligation on non-target sequences under real-world assay conditions. We designed and tested 11 PLPs to target various plant pathogens at the genus, species and subspecies levels, and developed a prototype PLP-based plant health chip. Excellent specificity was demonstrated toward the target organisms. Assay background was determined for each hybridization using a no-target reference sample, which provided reliable and sensitive identification of positive samples. A sensitivity of 5 pg genomic DNA and a dynamic range of detection of 100 were observed. The developed multiplex diagnostic system was validated using genomic DNAs of characterized isolates and artificial mixtures thereof. The demonstrated system is adaptable to a wide variety of applications ranging from pest management to environmental microbiology.
MeSH Terms
Animals
Fungi/genetics,isolation & purification
Molecular Diagnostic Techniques
Nematoda/genetics,isolation & purification
Oligonucleotide Array Sequence Analysis/methods
Oligonucleotide Probes/chemistry
Oomycetes/genetics,isolation & purification
Plant Diseases/microbiology,parasitology
Chemicals
Oligonucleotide Probes
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Szemes Marianna
Plant Research International BV Droevendaalsesteeg 1, Wageningen 6708PB, The Netherlands.
Bonants Peter
de Weerdt Marjanne
Baner Johan
Landegren Ulf
Schoen Cor D
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