Chemistry laboratory, Department of Field and Vegetable Crops, Faculty of Agriculture, University of Novi Sad, Trg Dositeja Obradovića 8, Novi Sad, 21000, Serbia.
Laboratory of Phytopathology, Department for Plant and Environmental Protection, Faculty of Agriculture, University of Novi Sad, Trg Dositeja Obradovića 8, Novi Sad, 21000, Serbia.
World J Microbiol Biotechnol. 2024 Nov 25;40(12):393. doi: 10.1007/s11274-024-04201-w.
Hydrophobic Deep Eutectic Solvents (HDES), as a subclass of Natural Deep Eutectic Solvents (NADES), present a green-chemistry alternative to toxic chemicals. As HDES are based on terpenoids, these solvents could potentially be effective antifungal agents against phytopathogens Monilinia fructicola and Botrytis cinerea that frequently cause diseases in sweet cherry fruit. To contribute to the disease prevention and management goals, as a part of this study, 30 different HDES were tested in the vapor phase, at identical concentrations of 25%, 50%, and 100%. In vitro experiments were conducted on Potato Dextrose Agar medium (PDA), while in planta experiments were carried out in hermetically sealed containers with inoculated sweet cherry fruits. All tested HDES demonstrated efficacy in suppressing the growth of M. fructicola colonies (66 - 100%) and B. cinerea colonies (37 - 100%). According to the Area Under the Disease Progress Curve (AUDPC), all HDES exhibited high efficacy in preventing disease occurrence in cherry fruits by the tested phytopathogens. This research provides the first insights into the antifungal potential of HDES in the vapor phase, with promising applications as biofumigants that minimize harmful impacts on the food - human - environment complex.
疏水型深共熔溶剂(HDES)作为天然深共熔溶剂(NADES)的一个子类,为有毒化学品提供了一种绿色化学替代方案。由于 HDES 基于萜烯类化合物,因此这些溶剂有可能成为防治频繁引起甜樱桃果实病害的病原菌(如 Monilinia fructicola 和 Botrytis cinerea)的有效抗真菌剂。为了实现病害防治和管理目标,作为本研究的一部分,在相同的 25%、50%和 100%浓度下,对 30 种不同的 HDES 进行了气相测试。在马铃薯葡萄糖琼脂培养基(PDA)上进行了体外实验,同时在密封容器中对接种的甜樱桃果实进行了体内实验。所有测试的 HDES 都显示出抑制 M. fructicola 菌落生长的功效(66-100%)和 B. cinerea 菌落生长的功效(37-100%)。根据病害进展曲线下的面积(AUDPC),所有 HDES 都表现出了对樱桃果实中被测试的病原菌病害发生的高度防治效果。这项研究首次揭示了 HDES 在气相中的抗真菌潜力,有望作为生物熏蒸剂应用,最大限度地减少对食品-人类-环境复合体的有害影响。