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Assessment of a new qPCR tool for the detection and identification of the root-knot nematode Meloidogyne enterolobii by an international test performance study

GND
1179793692
Zugehörigkeit
Agroscope, Research Division Plant Protection, CH-8820 Waedenswil, Switzerland
Braun-Kiewnick, Andrea;
Zugehörigkeit
ILVO, Plant-Crop Protection, Nematology, Burg. Van Gansberghelaan 96, 9820 Merelbeke, Belgium
Viaene, Nicole;
Zugehörigkeit
ANSES, Plant Health Laboratory, Domaine de la Motte au Vicomte BP 35327, 35653 Le Rheu Cedex, France
Folcher, Laurent;
Zugehörigkeit
ANSES, Plant Health Laboratory, Domaine de la Motte au Vicomte BP 35327, 35653 Le Rheu Cedex, France
Ollivier, Fabrice;
Zugehörigkeit
ANSES, Plant Health Laboratory, Domaine de la Motte au Vicomte BP 35327, 35653 Le Rheu Cedex, France
Anthoine, Géraldine;
GND
123583926
Zugehörigkeit
Julius Kühn-Institute (JKI), Federal Research Centre for Cultivated Plants, Institute for National and International Plant Health, Brunswick, Germany
Niere, Björn;
Zugehörigkeit
FERA - The Food & Environment Research Agency, Sand Hutton, UK-York YO41 1LZ, UK
Sapp, Melanie;
Zugehörigkeit
Div. Nematology, National Plant Protection Organization, National Reference Center (NRC), Geertjesweg 15, 6700 HC, Wageningen, Netherlands
Vossenberg, Bart van de;
Zugehörigkeit
Faculty Agricultural Sciences and Technology, University of Nigde, Nigde 51240, Turkey
Toktay, Halil;
GND
120454858
Zugehörigkeit
Agroscope, Research Division Plant Protection, CH-8820 Waedenswil, Switzerland
Kiewnick, Sebastian

Rapid and reliable tools for detection and identification of plant parasitic nematodes are needed to prevent the introduction and spread of quarantine nematodes. A fast and simple DNA extraction method for target nematodes in nematode suspensions obtained from soil samples and a new quantitative real-time PCR method (qPCR) for the specific detection, identification and potential quantification of M. enterolobii were tested in an inter-laboratory comparison (ring test) to allow for a thorough evaluation of these molecular diagnostic tools. A test performance study involving seven laboratories was conducted to validate the developed protocols and to identify possible difficulties when implemented by diagnostic laboratories or national reference centers. Validation included test performance in terms of accuracy, analytical specificity, analytical sensitivity, repeatability, and reproducibility as defined by European Plant Protection Organization (EPPO) standard PM7/98. All positive and negative results for detection, identification and specificity were consistent between different laboratories despite different equipment used. Accuracy of real-time PCR was 100 % because test results and accepted reference values were in agreement. Analytical sensitivity results also matched between laboratories independent of the equipment used. The smallest amount of target DNA tested, two second-stage juveniles of M. enterolobii in a background of 500 non-target nematodes, was reliably detected by all labs. In addition, the repeatability and reproducibility of test results between laboratories was 100 %, even at the limit of detection. Thus, the inter-laboratory comparison showed the robustness of the developed methods and confirmed the in-house validation data.

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