伏马菌素
镰刀菌
伏马菌素B1
真菌毒素
对映体
孵化
对映选择合成
分生孢子
立体选择性
化学
真菌不全
生物
立体化学
食品科学
微生物学
园艺
生物化学
催化作用
作者
Zhou Tong,DanDan Meng,Wenyu Zhang,Lei Jin,Xiaotong Yi,Dong Xu,Mingna Sun,Yue Chu,Jinsheng Duan
标识
DOI:10.1021/acs.jafc.4c01336
摘要
The occurrence of maize ear rot caused by Fusarium verticillioides (F. verticillioides) poses a threat to the yield and quality of maize. Mefentrifluconazole enantiomers appear to have strong stereoselective activity against F. verticillioides and cause differences in fumonisin production. We evaluated the stereoselective activity of mefentrifluconazole enantiomers by determining inhibition of the strain, hyphae, and conidia. Strain inhibition by R-(−)-mefentrifluconazole was 241 times higher than S-(+)-mefentrifluconazole and 376 times higher in conidia inhibition. For the mechanism of the enantioselective bioactivity, R-mefentrifluconazole had stronger binding to proteins than S-(+)-mefentrifluconazole. Under several concentration conditions, the fumonisin concentration was 1.3–24.9-fold higher in the R-(−)-mefentrifluconazole treatment than in the S-(+)-mefentrifluconazole treatment. The R-enantiomer stimulated fumonisin despite a higher bioactivity. As the incubation time increased, the stimulation of the enantiomers on fumonisin production decreased. R-(−)-Mefentrifluconazole stimulated higher fumonisin production in F. verticillioides at 25 °C compared to 30 °C. This study established a foundation for the development of high-efficiency and low-risk pesticides.
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