4 resultados para QoIs


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Experiments were carried out to determine in vivo the IC50 and the IC90 for demethylation-inhibitor fungicides (DMIs, triazoles) and quinone outside inhibitors (QoIs, strobilurins) to the five most frequent races of Puccinia triticina in 2007 growing season in Southern Brazil. The tests were done in a greenhouse with wheat seedlings. DMI fungicides were tested at the concentrations, in mg/L, 0.0; 0.02; 0.2; 2.0; 20.0; 100.0 and 200.0, and QoIs at the concentrations 0.0; 0.0001; 0.001; 0.01; 0.1; 1 and 10.0 mg of active ingredient/L water. Fungicides were preventively applied at 24 hours before the inoculation of seedlings with the fungal spores. The effect of treatments was assessed based on the number of uredia/cm². The lowest IC50 (inhibitory concentration) for DMI fungicides determined for MCG-MN, sensitive race, ranged from 0.33 to 0.91 mg/L, while the highest values for MDP-MR, MDT-MR, MDK-MR, MFH-HT races, varied from 9.63 to 85.64 mg/L (suspected insensitivity). QoI fungicide presented an IC50 varying from 0.0018 to 0.14 mg/L. The sensitivity reduction factor for DMIs varied from 8.8 to 238.8, and for QoIs from 0.3 to 1.5 mg/L. Sensitivity reduction was confirmed for the races MDP-MR, MDT-MR, MDK-MR, MFH-HT to DMIs, as well as their sensitivity to QoI fungicides.

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Published data containing fungicide concentrations that control 50% (IC50) of a given fungus were analyzed. In the analysis we considered: (i) the IC50 determined in vitroand in vivofor a given fungicide and for a specific fungus; (ii) the concentration (g/ha) of active ingredient for the fungicide indicated to control a specific disease in the field; (iii) water volume of 120/L used in the spray; (iv) the fungicide a.i. concentration (mg/L) in 120 L volume; (v) and the ratio of the concentration used in the field with that determined in the laboratory. The analysis were performed by using IC50 data for DMIs, QoIs, a carbamate and a benzimidazol against the following fungi Bipolaris sorokiniana, Drechslera tritici-repentis, D. siccans, Fusarium graminearum, Puccinia triticina, Exserohilum turcicum, Phakopsora pachyrhiziand Corynespora cassiicola. The fungicide concentrations sprayed in the field were 33.9 (D. siccansand trifloxystrobin) to 500,000.0 (E. turcicumand iprodione) times higher than that determined in the laboratory. It was concluded that the IC50 was not related to the concentration used in the field and therefore should be used to compare the power among fungicides and to monitor the fungal sensitivity shift towards fungicides

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O principal mecanismo que confere resistência do fungo Venturia inaequalis aos inibidores de oxidação (quinol QoIs) é a ocorrência de mutações no gene citocromo b CYTB (G143A). O objetivo do trabalho foi a implementação da metodologia RFLP-PCR para caracterizar a reação de isolados de V. inaequalis à presença de Qols. Foram utilizados sete isolados monospóricos de V. inaequalis, coletados em pomares comerciais de Santa Catarina e cedidos pela Estação Experimental da EPAGRI de São Joaquim, Santa Catarina. Os isolados foram classificados como sensíveis ou resistentes após crescimento em meio BDA contendo 10 µg.mL-1 de cresoxim metílico. Para determinação da presença da mutação G143A foram utilizados os marcadores específicos ViCytB-5F e ViCytB-6071R. O DNA dos isolados foi amplificado em reação de PCR e separado em gel de agarose 1,5%. Os fragmentos foram então digeridos com a enzima de restrição Fnu4HI identificadora da mutação e os produtos da digestão foram analisados por eletroforese num gel de agarose 1,0%. Os genótipos revelados estavam associados ao fenótipo estabelecido pelo crescimento dos isolados em presença do fungicida, mostrando que 6 isolados já apresentavam o alelo de resistência. O uso de técnicas de RFLP-PCR permitiram uma avaliação rápida e confiável na detecção da resistência de V. inaequalisao cresoxim metílico.