Faculty of Biochemical and Chemical Engineering, Chair of Technical Biochemistry, TU Dortmund University, Dortmund, Germany.
Bayer AG Division Crop Science, Monheim, Germany.
Pest Manag Sci. 2021 Dec;77(12):5356-5366. doi: 10.1002/ps.6575. Epub 2021 Aug 6.
Cannabis sativa L. (hemp) is a medicinal plant producing various cannabinoids. Its consumption is legalized for medical use due to the alleged positive health effects of these cannabinoids. To satisfy the demand, C. sativa plants are propagated in contained growth chambers. During indoor propagation, pesticides usually are used to ensure efficient production. However, pesticide registration and safe application in C. sativa has not been investigated in detail.
With this study the metabolic degradation of pesticides in recently established C. sativa callus cultures was examined. Tebuconazole, metalaxyl-M fenhexamid, flurtamone and spirodiclofen were applied at 10 μm for 21 days. Results were compared with metabolism data obtained from Brassica napus L., Glycine max (L.) Merr., Zea mays L. and Tritium aestivum L. callus cultures as well as in metabolism guideline studies. The successfully established C. sativa callus cultures were able to degrade pesticides by oxidation, demethylation, and cleavage of ester bonds in phase I, as well as glycosylation and conjugation with malonic acid in phase II and III. Initial metabolites were detected after Day (D)7 and were traced at D21.
The resulting pathways demonstrate the same main degradation strategies as crop plants. Because metabolites could be the main residue, the exposure of consumers to these residues will be of high importance. We present here an in vitro assay for a first estimation of pesticide metabolism in C. sativa. © 2021 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.
大麻(hemp)是一种药用植物,能产生各种大麻素。由于这些大麻素据称对健康有积极影响,大麻的使用已被合法化,可用于医疗用途。为了满足需求,大麻植物在封闭的生长室内进行繁殖。在室内繁殖期间,通常会使用农药来确保高效生产。然而,尚未详细研究大麻中农药的登记和安全应用。
本研究检测了最近建立的大麻愈伤组织培养物中农药的代谢降解情况。噻菌灵、精甲霜灵-M、咯菌腈和螺虫乙酯以 10 μm 的浓度处理 21 天。将结果与油菜、大豆、玉米和小麦愈伤组织培养物的代谢数据以及代谢指南研究进行了比较。成功建立的大麻愈伤组织培养物能够通过氧化、脱甲基和酯键裂解在 I 相,以及通过糖基化和与丙二酸的结合在 II 相和 III 相降解农药。在第 7 天(D)检测到初始代谢物,并在第 21 天(D21)进行了追踪。
所产生的途径表明与农作物具有相同的主要降解策略。由于代谢物可能是主要残留,因此消费者接触这些残留的情况将非常重要。我们在这里提出了一种体外测定法,可用于初步估计大麻中的农药代谢。© 2021 作者。Pest Management Science 由 John Wiley & Sons Ltd 代表化学工业协会出版。