新一代低风险杀菌剂 Fludioxonil 对抗褐腐病病原体的效果。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Jovana Hrustić, Uroš Vojinović, Milica Mihajlović, Milan Stević, Brankica Pešić
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引用次数: 0

摘要

由莫尼林菌引起的褐腐病是一种对梨果和核果具有破坏性的病害,可导致严重的产量损失。病害防治主要是在生长季节施用杀菌剂。新一代低风险杀菌剂 Fludioxonil 是最常用的杀菌剂之一。本研究的目的是比较并确定氟啶虫腈对选定的腊肠金龟子、果金龟子和果金龟子分离物的毒性,测试其在脱落果实中的效果,并评估其在实际控制条件下的效果。体外测试了总共 27 个分离株(10 个拉克沙霉分离株、8 个果核霉分离株和 9 个果核霉分离株)对氟虫腈的敏感性。每个物种的分离物对杀菌剂的反应相同,但不同物种之间存在差异。根据计算出的抗性因子(RF),受检分离物被分为两类:敏感型和中度抗性型。对标签浓度的氟虫腈在脱落果实上的效力进行的体内测试并未发现不同敏感性类别的分离物之间存在差异;无论分离物类别如何,标签浓度(0.1%)的氟虫腈都能93.5%至100%地抑制腐烂的发展。田间试验表明,氟啶虫酰胺对防止水果褐腐病有很高的功效,桃子的有效率为 92.2%至 100%,李子为 90.7%至 97.3%,酸樱桃为 84.9%至 91.9%。总之,根据体外药敏试验,以及在田间实际条件下使用氟啶虫腈防治褐腐病时,氟啶虫腈都非常有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effectiveness of Fludioxonil, a New-Generation Reduced-Risk Fungicide, Against Brown Rot Pathogens.

Effectiveness of Fludioxonil, a New-Generation Reduced-Risk Fungicide, Against Brown Rot Pathogens.

Brown rot, caused by Monilinia species, is a destructive disease of pome and stone fruits that can lead to significant losses in production. Disease management is mainly based on fungicide applications during the growing season. Fludioxonil, a "new-generation reduced-risk fungicide", is one of the most important fungicide used. The objectives of the present study were to compare and determine the toxicity of fludioxonil to selected M. laxa, M. fructigena and M. fructicola isolates, to test its effectiveness in detached fruits and to assess its effectiveness under practical control conditions. A total of 27 isolates (10 isolates of M. laxa, 8 of M. fructigena and 9 of M. fructicola) were tested for sensitivity to fludioxonil in vitro. Isolates from each species exhibited a homogeneous response to the fungicide, while differences among the different species were determined. Based on calculated resistance factors (RF), the examined isolates were classified into two categories: sensitive and moderately resistant. In vivo testing of the effectiveness of the label concentration of fludioxonil on detached fruit did not reveal differences between isolates classified into different sensitivity categories; fludioxonil used at the label concentration (0.1%) inhibited decay development 93.5 to 100%, regardless of the isolate category. Field trials revealed the very high efficacy of fludioxonil in preventing brown rot on fruits, ranging from 92.2 to 100 for peach, 90.7 to 97.3 for plum and 84.9 to 91.9% for sour cherry. In conclusion, fludioxonil was highly effective according to in vitro sensitivity tests and when used under practical field conditions for brown rot control.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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