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Biochemical Effects of Petroselinum crispum (Umbellifereae) Essential Oil on the Pyrethroid Resistant Strains of Aedes aegypti (Diptera: Culicidae)

机译:松香(Usbellifereae)精油对埃及伊蚊(Aptes)的拟除虫菊酯抗性菌株的生化作用

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摘要

In ongoing screening research for edible plants, Petroselinum crispum essential oil was considered as a potential bioinsecticide with proven antimosquito activity against both the pyrethroid susceptible and resistant strains of Aedes aegypti. Due to the comparative mosquitocidal efficacy on these mosquitoes, this plant essential oil is promoted as an attractive candidate for further study in monitoring resistance of mosquito vectors. Therefore, the aim of this study was to evaluate the impact of P. crispum essential oil on the biochemical characteristics of the target mosquito larvae of Ae. aegypti, by determining quantitative changes of key enzymes responsible for xenobiotic detoxification, including glutathione-S-transferases (GSTs), α- and β-esterases (α-/β-ESTs), acetylcholinesterase (AChE), acid and alkaline phosphatases (ACP and ALP) and mixed-function oxidases (MFO). Three populations of Ae. aegypti, comprising the pyrethroid susceptible Muang Chiang Mai-susceptible (MCM-S) strain and the pyrethroid resistant Pang Mai Dang-resistant (PMD-R) and Upakut-resistant (UPK-R) strains, were used as test organisms. Biochemical study of Ae. aegypti larvae prior to treatment with P. crispum essential oil revealed that apart from AChE, the baseline activity of most defensive enzymes, such as GSTs, α-/β-ESTs, ACP, ALP and MFO, in resistant UPK-R or PMD-R, was higher than that determined in susceptible MCM-S. However, after 24-h exposure to P. crispum essential oil, the pyrethroid susceptible and resistant Ae. aegypti showed similarity in biochemical features, with alterations of enzyme activity in the treated larvae, as compared to the controls. An increase in the activity levels of GSTs, α-/β-ESTs, ACP and ALP was recorded in all strains of P. crispum oil-treated Ae. aegypti larvae, whereas MFO and AChE activity in these mosquitoes was decreased. The recognizable larvicidal capability on pyrethroid resistant Ae. aegypti, and the inhibitory effect on AChE and MFO, emphasized the potential of P. crispum essential oil as an attractive alternative application for management of mosquito resistance in current and future control programs.
机译:在正在进行的食用植物筛选研究中,Petroselinum crispum香精油被认为是潜在的生物杀虫剂,具有对拟除虫菊酯敏感和抗性埃及伊蚊菌株的灭蚊活性。由于在这些蚊子上具有相对的灭蚊效力,因此提倡将该植物精油作为有吸引力的候选物,用于进一步研究以监测蚊媒的抗性。因此,本研究的目的是评估香菇假单胞菌精油对Ae靶蚊幼虫生化特性的影响。通过确定负责异种生物解毒的关键酶的定量变化,包括谷胱甘肽-S-转移酶(GST),α-和β-酯酶(α-/β-EST),乙酰胆碱酯酶(AChE),酸性和碱性磷酸酶(ACP)和ALP)和混合功能氧化酶(MFO)。大江三族。包括拟除虫菊酯易感的Muang Chiang Mai易感株(MCM-S)和耐拟除虫菊酯的Pang Mai Dang耐药(PMD-R)和对Upakut耐药(UPK-R)的埃及伊蚊为测试生物。 Ae的生化研究。用香菇假单胞菌精油治疗之前的埃及伊蚊幼虫显示,除AChE外,大多数抗性酶(例如GST,α-/β-EST,ACP,ALP和MFO)在抗性UPK-R或PMD-中的基线活性R 1高于易感MCM-S中确定的R。但是,在暴露于香菇假单胞精油24小时后,拟除虫菊酯易感且具有抗性Ae。与对照相比,埃及伊蚊在生化特征上显示出相似性,并且在处理过的幼虫中酶活性发生了变化。在所有 P菌株中,GSTs,α-// β -ESTs,ACP和ALP的活性水平均有所提高。 crispum 油处理的 Ae。埃及伊蚊幼虫,而这些蚊子的MFO和AChE活性下降。对拟除虫菊酯抗性 Ae 具有明显的杀幼虫能力。 aegypti 及其对AChE和MFO的抑制作用强调了 P的潜力。在当前和将来的控制计划中,crispum 精油可作为有吸引力的替代产品来管理蚊子的抗药性。

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