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Simple and Portable Magnetic Immunoassay for Rapid Detection and Sensitive Quantification of Plant Viruses
Authors:Stefanie Rettcher  Felicitas Jungk  Christoph Kühn  Hans-Joachim Krause  Greta N?lke  Ulrich Commandeur  Rainer Fischer  Stefan Schillberg  Florian Schr?per
Affiliation:aFraunhofer Institute for Molecular Biology and Applied Ecology IME, Aachen, Germany;bPeter Grünberg Institute PGI-8, Research Center Jülich, Jülich, Germany;cInstitute for Molecular Biotechnology (Biology VII), RWTH Aachen University, Aachen, Germany
Abstract:Plant pathogens cause major economic losses in the agricultural industry because late detection delays the implementation of measures that can prevent their dissemination. Sensitive and robust procedures for the rapid detection of plant pathogens are therefore required to reduce yield losses and the use of expensive, environmentally damaging chemicals. Here we describe a simple and portable system for the rapid detection of viral pathogens in infected plants based on immunofiltration, subsequent magnetic detection, and the quantification of magnetically labeled virus particles. Grapevine fanleaf virus (GFLV) was chosen as a model pathogen. Monoclonal antibodies recognizing the GFLV capsid protein were immobilized onto immunofiltration columns, and the same antibodies were linked to magnetic nanoparticles. GFLV was quantified by immunofiltration with magnetic labeling in a double-antibody sandwich configuration. A magnetic frequency mixing technique, in which a two-frequency magnetic excitation field was used to induce a sum frequency signal in the resonant detection coil, corresponding to the virus concentration within the immunofiltration column, was used for high-sensitivity quantification. We were able to measure GFLV concentrations in the range of 6 ng/ml to 20 μg/ml in less than 30 min. The magnetic immunoassay could also be adapted to detect other plant viruses, including Potato virus X and Tobacco mosaic virus, with detection limits of 2 to 60 ng/ml.
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