Ebadollahi Asgar, Sendi Jalal Jalali, Aliakbar Alireza
Moghan College of Agriculture and Natural Resources, University of Mohaghegh Ardabili, Iran.
Department of Plant Protection, Faculty of Agricultural Sciences, University of Guilan, Iran.
J Econ Entomol. 2017 Dec 5;110(6):2413-2420. doi: 10.1093/jee/tox234.
Inspite of well-established potentiality of plant essential oils as biopesticides, their environmentally low persistence is considered as a hindering obstacle for its commercialization. In the present study, chemical composition and toxicity of essential oils isolated from leaves of Thymus eriocalyx and Thymus kotschyanus were evaluated against two-spotted spider mite, Tetranychus urticae. The chemicals present in the crude oil were found to be thymol (28.83%), oleic acid (11.51%), palmitic acid (8.60%), borneol (5.72%), ρ-cymene (3.60%), and 1,8-cineole (3.57%) in the essential oil of T. eriocalyx, and camphene (35.59%), linalyl acetate (20.47%), linalool (14.75%), α-terpineol (13.87%), and geranyl acetate (3.07%) in the essential oil of T. kotschyanus. The essential oils had strong fumigant toxicity on the adult females of Te. urticae and their fumigation persistence was prolonged until 6 and 5 d, respectively, for T. eriocalyx and T. kotschyanus. Loading of essential oils in MCM-41 increased their stability and persistence was extended up to 20 and 18 d for T. eriocalyx and T. kotschyanus. Further, mite mortality increased from 80 to 203 mites by T. eriocalyx and from 58 to 186 mites by T. kotschyanus nanoencapsulated essential oils. Based on these results, nanoencapsulation of T. eriocalyx and T. kotschyanus essential oils in MCM-41 may be a useful method for their application in the management of Te. urticae.
尽管植物精油作为生物农药的潜力已得到充分证实,但其在环境中的低持久性被认为是其商业化的阻碍。在本研究中,对从绵毛百里香和科氏百里香叶中分离出的精油的化学成分和毒性进行了评估,以对抗二斑叶螨。在绵毛百里香精油中发现原油中的化学物质为百里香酚(28.83%)、油酸(11.51%)、棕榈酸(8.60%)、冰片(5.72%)、对伞花烃(3.60%)和1,8-桉叶素(3.57%),在科氏百里香精油中为莰烯(35.59%)、乙酸芳樟酯(20.47%)、芳樟醇(14.75%)、α-萜品醇(13.87%)和乙酸香叶酯(3.07%)。这些精油对二斑叶螨的成年雌螨具有很强的熏蒸毒性,其熏蒸持久性分别延长至绵毛百里香和科氏百里香的6天和5天。将精油负载于MCM-41中可提高其稳定性,绵毛百里香和科氏百里香的持久性分别延长至20天和18天。此外,纳米封装的绵毛百里香精油使螨死亡率从80只增加到203只,纳米封装的科氏百里香精油使螨死亡率从58只增加到186只。基于这些结果,将绵毛百里香和科氏百里香精油纳米封装于MCM-41中可能是其应用于二斑叶螨防治的一种有用方法。