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作为一种杀菌剂,对抑霉唑三(阿魏酸酯)的生物活性和生化分析防治尾孢菌属。

A bioactivity and biochemical analysis of iminoctadine tris (albesilate) as a fungicide against Corynespora cassiicola.

机构信息

Shandong Provincial Key Laboratory for Biology of Vegetable Diseases and Insect Pests, College of Plant Protection, Shandong Agricultural University, 61 Daizong Street, Tai'an, Shandong 271018, China.

Shandong Provincial Key Laboratory for Biology of Vegetable Diseases and Insect Pests, College of Plant Protection, Shandong Agricultural University, 61 Daizong Street, Tai'an, Shandong 271018, China; Key Laboratory of Pesticide Toxicology & Application Technique, Shandong Agricultural University, Tai'an, Shandong 271018, China.

出版信息

Pestic Biochem Physiol. 2019 Jul;158:121-127. doi: 10.1016/j.pestbp.2019.04.016. Epub 2019 May 2.

Abstract

Iminoctadine tris (albesilate) is a bis-guazatine fungicide, and its specific modes of action and efficacy against C. cassiicola are not yet clear. In this study, baseline sensitivity data for mycelial growth showed that the frequency distribution curve of iminoctadine tris (albesilate) EC values is unimodal. The EC values ranged from 0.1151 to 1.2101 μg/mL, with a mean of 0.5775 ± 0.2677 μg/mL. Iminoctadine tris (albesilate) affected the morphological development of C. cassiicola, causing increased branching of the mycelium. The significant increase in membrane permeability and malondialdehyde content after iminoctadine tris (albesilate) treatment indicated that this fungicide caused severe damage to the membrane structure. Furthermore, 0.4 μg/mL iminoctadine tris (albesilate) could decrease the spore density of C. cassiicola from 2.6200 × 10 to 1.4967 × 10/cm on average in vitro, indicating that the fungicide had great potential to reduce secondary infection with C. cassiicola in the field. Additionally, 120 μg/mL iminoctadine tris (albesilate) provided over 95% curative efficacy and 81.17% preventative efficacy on detached cucumber leaves inoculated with C. cassiicola. In field trials, iminoctadine tris (albesilate) at a dose of 120 g a.i./ha exhibited 72.92% and 80.92% control efficacy in 2017 and 2018, respectively. However, the efficacy supplied by the reference fungicide azoxystrobin at 250 g a.i./ha was only approximately 50% due to the development of fungicide resistance in C. cassiicola. Taken together, the findings above provide a solid foundation for the exploration of the action mechanisms of iminoctadine tris (albesilate) against C. cassiicola and provide overwhelming evidence for the use of iminoctadine tris (albesilate) as an excellent potential alternative fungicide in the management of cucumber Corynespora leaf spot.

摘要

抑霉唑三(阿苯达唑)是一种双胍类杀菌剂,其对 C. cassiicola 的具体作用方式和功效尚不清楚。在本研究中,菌丝生长的基础敏感性数据显示,抑霉唑三(阿苯达唑)EC 值的频率分布曲线呈单峰型。EC 值范围为 0.1151 至 1.2101μg/mL,平均值为 0.5775±0.2677μg/mL。抑霉唑三(阿苯达唑)影响 C. cassiicola 的形态发育,导致菌丝分枝增加。抑霉唑三(阿苯达唑)处理后膜通透性和丙二醛含量显著增加,表明该杀菌剂对膜结构造成严重损伤。此外,0.4μg/mL 的抑霉唑三(阿苯达唑)可使离体条件下 C. cassiicola 的孢子密度从 2.6200×10 平均降低至 1.4967×10/cm,表明该杀菌剂具有很大潜力降低田间 C. cassiicola 的二次感染。此外,120μg/mL 的抑霉唑三(阿苯达唑)对离体接种 C. cassiicola 的黄瓜叶片提供了超过 95%的治疗效果和 81.17%的预防效果。在田间试验中,120g a.i./ha 剂量的抑霉唑三(阿苯达唑)在 2017 年和 2018 年分别表现出 72.92%和 80.92%的防治效果。然而,由于 C. cassiicola 对杀菌剂产生了抗性,参考杀菌剂唑菌酯 250g a.i./ha 的防治效果仅约为 50%。综上所述,上述研究结果为探索抑霉唑三(阿苯达唑)对 C. cassiicola 的作用机制提供了坚实的基础,并为抑霉唑三(阿苯达唑)作为防治黄瓜炭疽病的一种优秀潜在替代杀菌剂提供了充分的证据。

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