Observation on Baseline Sensitivity of <i>Erysiphe necator</i> Genetic Groups to Azoxystrobin
- 1 Faculty of Agricultural Science and Technology, Palestine Technical University-Kadoori (PTUK), Tulkarm, Palestine.
Abstract
Powdery mildew, caused by Erysiph necator , is a common and severe fungal disease of grapevine all over the world. The disease costs millions of dollars to vine growers, due to intensive use of fungicides and yield losses. Recently in population of E. necator two genetic groups have been described, the two groups seem to occupy different temporal niches, with a temporal alternation that is clear-cut in vineyards intensively treated with chemical fungicides. QoI-STAR (Quinol Outside Inhibitors-Strobilurin Type of Action and Resistance) fungicides are widely used to control the disease, and generally carry a high risk of pathogen resistance development. To clarify the behaviors of the biotrophic fungus when treated with azoxystrobin as a representative of QoI-STAR, baseline sensitivity of laboratory isolates were determined. A leaf bioassay and the primers RSCBF1 and RSCBR2 designed on the highly conserved regions of cytb gene in fungi were used. Partial sequence of E. necator cytb gene were obtained. Attempts to obtain a laboratory mutant were not totally successful. The sensitivity to azoxystrobin (EC 50 ) in isolates of genetic group B was significantly higher than in isolates of group A, to which all the isolates collected later in the season belonged. The higher sensitivity to azoxystrobin fungicides observed in group B isolates can be at the basis of their precocious disappearance in vineyards, and can have important implications for powdery mildew control strategies.
- M. Miazzi, H. Hajjeh and F. Faretra, “Occurrence and Distribution of Two Distinct Genetic Group in Population of Erysiphe necator Schw. In Southern Italy,” Journal of Plant Pathology, Vol. 90, No. 3, 2008, pp. 563-573.
- M. Miazzi and H. R. Hajjeh, “Differential Sensitivity to Triadimenol of Erysiphe necator Isolates Belonging to Different Genetic Groups,” Journal of Plant Pathology, Vol. 93, No. 3, 2011, pp. 729-735.
- S. P. Heaney, A. A. Hall, S. A. Davies and G. Olaya, “Resistance to Fungicides in the Qo1-STAR Cross-Resistance Group: Current Perspectives,” Proceedings of Brighton Crop Protection Conference-Pests and Diseases, Vol. 2, 2000, pp. 755-762.
- H. Ishii, “QoI Fungicide Resistance: Current Status and the Problems Associated with DNA-Based Monitoring,” In: U. Gisi, I. Chet and M. L. Gullino, Eds., Recent Developments in Management of Plant Diseases, Plant Pathology in the 21st Century, Springer, Dordnecht, 2009, pp. 37-45.
- D. Zheng, G. Olaya and W. Koller, “Characterization of Laboratory Mutants of Venturia inaequalis Resistant to Strobilurins-Related Fungicides Kresoxim-Methyl,” Current Genetics, Vol. 38, 2000, pp. 148-155. doi:10.1007/s002940000147
- S. Baumler, H. Sierotzki, U. Gisi, V. Mohler, F.G. Felsenstein and G. Schwarz, “Evaluation of Erysiphe graminis f. sp. tritici Field Isolates for Resistance to Strobilurin Fungicides with Different SNP Detection Systems,” Pest Management Science, Vol. 59, No. 3, 2003, pp. 310-314. doi:10.1002/ps.639
- P. M. Wood and D. W. Hollomon, “A Critical Evaluation of the Role of Alternative Oxidase in the Performance of Strobilurin and Related Fungicides Acting at the Qo Site of Complex III,” Pest Management Science, Vol. 59, No. 5, 2003, pp. 499-511. doi:10.1002/ps.655
- H. Sierotzki, R. Frey, J. Wullschleger, S. Palermo, S. Karli, J. Godwin and U. Gisi, “Cytochrome b Gene Sequence and Structure of Pyrenophora teres and P. triticirepentis and Implications for QoI Resistance,” Pest Management Science, Vol. 63, No. 3, 2007, pp. 225-233. doi:10.1002/ps.1330
- M. Miguez, C. Reeve, P. M. Wood and D. W. Hollomon, “Alternative Oxidase Reduces the Sensitivity of Mycosphaerella graminicola to QoI Fungicides,” Pest Management Science, Vol. 60, No. 1, 2004, pp. 3-7. doi:10.1002/ps.837
- D. Fernández-Ortu?o, J. A. Torés, A. de Vicente and A. Pérez-García, “The QoI Fungicides, the Rise and Fall of a Successful Class of Agricultural Fungicides,” In: O. Carisse, Ed., Fungicides, Janeza Trdine, Rijeka, 2010, pp. 203-220. doi:10.5772/13205