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首页> 外文期刊>Plant Disease >Resistance in Strawberry Isolates of Colletotrichum acutatum from Florida to Quinone-Outside Inhibitor Fungicides
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Resistance in Strawberry Isolates of Colletotrichum acutatum from Florida to Quinone-Outside Inhibitor Fungicides

机译:佛罗里达州炭疽菌草莓分离株对醌外抑制剂杀菌剂的抗性

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摘要

Anthracnose fruit rot of strawberry, caused by Colletotrichum acutatum, is a major disease in Florida and frequent quinone-outside inhibitor (QoI) fungicide applications are needed for disease control. From 1994 to 2014, 181 C. acutatum isolates were collected from multiple strawberry fields in Florida with or without QoI spray history. Sensitivity to azoxystrobin and pyraclostrobin was tested based upon mycelial growth and germ tube elongation inhibition. Mean effective concentration where growth was reduced by 50% (EC50) values for isolates collected prior to 2013 based upon mycelial growth were 0.22 and 0.013 mu g/ml and upon germ tube elongation were 0.57 and 0.03 mu g/ml for azoxystrobin and pyraclostrobin, respectively. Mycelial growth and germ tube elongation of 48 isolates collected in 2013 and 2014 were not inhibited with azoxystrobin at 3 mu g/ml and pyraclostrobin at 0.110 mu g/ml. A fungicide discriminatory dose assay indicated that 43 of the 48 isolates had EC50 values higher than 100 and 10 mu g/ml for azoxystrobin and pyraclostrobin, respectively. Azoxystrobin and pyraclostrobin sprayed preventively on strawberry fruit inoculated with C. acutatum failed to control resistant isolates. Sequencing of the cytochrome b gene of sensitive and resistant isolates showed that QoI-resistant isolates contained either G143A or F129L amino acid substitutions.
机译:草莓炭疽病是由番茄炭疽菌引起的,是佛罗里达州的主要疾病,控制疾病需要频繁使用醌外抑制剂(QoI)杀菌剂。从1994年到2014年,从佛罗里达州多个草莓田收集了181株盾形衣原体分离株,有或没有QoI喷雾史。基于菌丝体生长和胚管伸长抑制,测试了对嘧菌酯和吡菌酯的敏感性。对于2013年之前基于菌丝体生长而收集的分离株,其生长降低50%(EC50)值的平均有效浓度为偶氮丙四醇和吡咯菌酯的浓度分别为0.22和0.013μg/ ml,并且根据胚管伸长分别为0.57和0.03μg/ ml,分别。 2013年和2014年收集的48株分离株的菌丝体生长和胚管伸长率均未受到3μg/ ml的嘧菌酯和0.110μg/ ml的吡菌酯的抑制。杀菌剂区分剂量分析表明,48种分离株中的43种对偶氮星灵和吡菌胺酯的EC50值分别高于100和10μg / ml。预防性地在接种了盾形假单胞菌的草莓果实上喷洒了天冬酰胺和吡唑醚菌酯,这些菌株无法控制耐药菌株。敏感和耐药菌株的细胞色素b基因测序表明,耐QoI的菌株含有G143A或F129L氨基酸取代。

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