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Overcoming the resistance of codling moth against conventional Cydia pomonella granulovirus (CpGV-M) by a new isolate CpGV-I12

Zugehörigkeit
Agricultural Service Center Palatinate (DLR Rheinpfalz), Department of Phytopathology, Laboratory for Biotechnological Crop Protection, Neustadt a. d. Wstr., Germany
Eberle, H. E.;
Zugehörigkeit
Agricultural Service Center Palatinate (DLR Rheinpfalz), Department of Phytopathology, Laboratory for Biotechnological Crop Protection, Neustadt a. d. Wstr., Germany
Asser-Kaiser, S.;
Zugehörigkeit
Agricultural Service Center Palatinate (DLR Rheinpfalz), Department of Phytopathology, Laboratory for Biotechnological Crop Protection, Neustadt a. d. Wstr., Germany
Sayed, S. M.;
Zugehörigkeit
Agricultural Service Center Palatinate (DLR Rheinpfalz), Department of Phytopathology, Laboratory for Biotechnological Crop Protection, Neustadt a. d. Wstr., Germany
Nguyen, H. T.;
GND
17274184X
Zugehörigkeit
Agricultural Service Center Palatinate (DLR Rheinpfalz), Department of Phytopathology, Laboratory for Biotechnological Crop Protection, Neustadt a. d. Wstr., Germany
Jehle, Johannes

Recently, codling moth (CM, Cydia pomonella L.) populations with a significantly reduced susceptibility to C. pomonella granulovirus (CpGV) products have been observed in Germany. A novel CpGV isolate, designated CpGV-I12, is able to overcome the CpGV resistance. CpGV-I12 originated from Iran and showed superior efficacy in laboratory bioassays against a resistant CM strain (CpR), which has a 100-fold reduced susceptibility to commercially used isolate CpGV-M. Determination of the median lethal concentration (LC50) indicated that CpGV-I12 is nearly as efficient in resistant CpR as CpGV-M in a susceptible CM strain (CpS). Beyond, CpGV-I12 caused superior mortality in CpS. Infection experiments showed that the resistance breaking effect can be observed in all instars of CpR. CpGV-I12 is a promising alternative control agent of CM in orchards where conventional CpGV products fail. In addition, we demonstrate in bioassays with recombinant expressed Cry1Ab that cross-resistance to CpGV and Bacillus thuringiensis products is not likely.

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