Toxicological and physiological activity of lemongrass and peppermint essential oils as acaricidal agents on life-table parameters of Oligonychus mangiferus (Rahman & Sapra) and its predatory mite, Cydnoseius negevi (Swirskii & Amitai)
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引用次数: 0
Abstract
The goal of this study is to explore the effects of lemongrass and peppermint essential oils, specifically at their LC50 concentrations, on the demographic parameters of two mite species: Oligonychus mangiferus (Rahman & Sapra) and its predatory mite counterpart, Cydnoseius negevi (Swirskii & Amitai). By evaluating these essential oils, the study aims to contribute to eco-friendly pest management strategies within integrated pest management (IPM) programs. The effects of these oils were assessed in terms of measuring the activity of antioxidant and detoxifying enzymes. GC–MS was used to identify the chemical components of these oils. The main compounds identified by GC–MS in lemongrass and peppermint essential oils were D-Limonene (45.06%), β-Citral (10.30%), α-Citral (9.90%)) and (Menthol (32.03%), Menthone (30.18%), p-Menthan-3-one (11.53%), respectively. The results showed that lemongrass and peppermint were more toxic to O. mangiferus than to C. negevi. Exposure of O. mangiferus to the LC50 of these oils caused a significant increase in peroxidase and catalase enzymes, but it inhibited the detoxifying enzymes, α-esterase, β-esterase, and glutathione s-transferase. Also, these oils had disruptive effects on survival, longevity, and fecundity of O. mangiferus; as they reduced its demographic parameters such as (R0) (GRR) (rm), and (λ). However, they did not show any substantial change in the development time and demographic parameters of C. negevi. On the contrary, they improved its enzymes activity. According to these findings, these essential oils can be used in combination with biological control agents in the integrated pest management strategies against the mango spider mite, O. mangiferus.
期刊介绍:
Phytoparasitica is an international journal on Plant Protection, that publishes original research contributions on the biological, chemical and molecular aspects of Entomology, Plant Pathology, Virology, Nematology, and Weed Sciences, which strives to improve scientific knowledge and technology for IPM, in forest and agroecosystems. Phytoparasitica emphasizes new insights into plant disease and pest etiology, epidemiology, host-parasite/pest biochemistry and cell biology, ecology and population biology, host genetics and resistance, disease vector biology, plant stress and biotic disorders, postharvest pathology and mycotoxins. Research can cover aspects related to the nature of plant diseases, pests and weeds, the causal agents, their spread, the losses they cause, crop loss assessment, and novel tactics and approaches for their management.