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首页> 外文期刊>Plant Disease >Resistance of Botrytis cinerea isolates from vegetable crops to anilinopyrimidine, phenylpyrrole, hydroxyanilide, benzimidazole, and dicarboximide fungicides.
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Resistance of Botrytis cinerea isolates from vegetable crops to anilinopyrimidine, phenylpyrrole, hydroxyanilide, benzimidazole, and dicarboximide fungicides.

机译:蔬菜作物中的灰葡萄孢分离株对苯胺嘧啶,苯基吡咯,羟基苯胺,苯并咪唑和二羧酰亚胺杀真菌剂的抗性。

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During February 2005, 55 single-spore isolates of Botrytis cinerea were collected at the end of the season from vegetable crops grown in 18 greenhouses on the island of Crete, Greece. They were tested for sensitivity to the anilinopyrimidine fungicides pyrimethanil and cyprodinil, the hydroxyanilide fungicide fenhexamid, the phenylpyrrole fungicide fludioxonil, the dicarboximide fungicide iprodione, and the benzimidazole fungicide carbendazim. Results of the study showed the existence of benzimidazole- and dicarboximide-resistant strains at frequencies of 61.8 and 18%, respectively. Moreover, for first time, the development of resistance to anilinopyrimidine fungicides by B. cinerea was detected in greenhouse vegetable crops on the island of Crete. High resistance frequencies of 49.1 and 57.4% were observed for pyrimethanil and cyprodinil, respectively. In addition, one isolate was found to be resistant to the hydroxyanilide fungicide fenhexamid, while no strains resistant to the phenylpyrrole fungicide were detected. Among the 55 isolates tested, 13 were resistant only to carbendazim, 6 were resistant only to anilinopyrimidines, 3 were resistant to both benzimidazoles and dicarboximides, 17 were resistant to both benzimidazoles and anilinopyrimidines, 6 were resistant to both dicarboximides and anilinopyrimidines, 1 was simultaneously resistant to benzimidazoles, dicarboximides, and anilinopyrimidines, 1 was resistant to both anilinopyrimidines and hydroxyanilides, and 8 were sensitive to all fungicides tested. A strong cross-resistance relationship was found between the two anilinopyrimidine fungicides tested when log transformed EC50 values of the isolates were subjected to a linear regression analysis (r=0.71). Despite the detection of several phenotypes with simultaneous resistance to chemically unrelated active ingredients, in none of the remaining possible fungicide pairs was there observed any kind of cross-resistance relationship..
机译:在2005年2月,本季节结束时,从希腊克里特岛上18个温室中种植的蔬菜作物中收集了55株灰葡萄孢单孢分离株。测试了它们对苯胺嘧啶杀真菌剂嘧啶氨和环丙啶,羟基苯胺杀真菌剂苯六胺,苯吡咯类杀真菌剂氟地西尼,二羧酰亚胺类杀真菌剂异戊二酮和苯并咪唑类杀真菌剂多菌灵的敏感性。研究结果表明,抗苯并咪唑和二甲酰亚胺的菌株的频率分别为61.8和18%。此外,首次在克里特岛的温室蔬菜作物中发现了灰葡萄芽孢杆菌对苯胺嘧啶杀真菌剂产生了抗性。嘧菌腈和环丙啶的高抗性频率分别为49.1%和57.4%。另外,发现一种分离物对羟基苯胺杀真菌剂fenhexamid具有抗性,而未检测到对苯吡咯杀真菌剂具有抗性的菌株。在测试的55个分离株中,13个仅对多菌灵耐药,6个仅对苯胺嘧啶耐药,3个对苯并咪唑和二羧嘧啶都有耐药性,17个对苯并咪唑和苯胺嘧啶都有耐药性,6个对二甲酰亚胺和苯胺嘧啶均耐药,同时有1个同时耐药对苯并咪唑,二甲酰亚胺和苯胺嘧啶具有抗性,1对苯胺嘧啶和羟基苯胺具有抗性,8对所有测试的杀菌剂均敏感。当对菌株的对数转换EC50值进行线性回归分析时,在测试的两种苯胺基嘧啶杀菌剂之间发现强交叉抗性关系(r = 0.71)。尽管检测到几种对化学无关活性成分具有同时耐药性的表型,但在其余可能的杀菌剂对中,均未发现任何交叉耐药关系。

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