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Botanical pesticides: identification of a molecular target and mode of action studies

机译:植物性农药:分子靶标的识别和作用方式研究

摘要

Mosquitoes and ticks are vectors of several diseases that affect both humans and animals. Control of mosquito-borne and tick-borne diseases has primarily been achieved with the use of chemical insecticides/acaricides. However, an increase in public concern about the safety of conventional synthetic compounds, along with growing insecticide/acaricide resistance, has resulted in a need to find alternatives to control ticks and mosquitoes. In this dissertation I report on the functional and pharmacological characterization of a tyramine receptor from the southern cattle tick (Rhipicephalus microplus). Additionally, I report on the role of botanical essential oil terpenoids to interact with the southern cattle ticku27s tyramine receptor. Physiological studies of the southern cattle ticku27s tyramine receptor, using post-transcription gene silencing, show that the southern cattle ticku27s tyramine receptor is a target that can result in tick mortality. The significance of these results is the reclassification of the southern cattle ticku27s tyramine receptor (previously thought to be an octopamine receptor), the identification of a potentially novel target of plant terpenoids in the southern cattle tick and an explanation for the potential role of formamidine resistance, which has been reported in the southern cattle tick. Finally, I present the ability of essential oils to enhance the toxicity and/or knockdown of the synthetic pyrethroid permethrin, against two mosquito species (Aedes aegypti and Anopheles gambiae). The enhancement of toxicity and knockdown is similar to, but in many cases, better than the commercial synergist piperonyl butoxide (PBO). The significance of these findings includes the ability to use natural control measures to replace PBO, which has been under scrutiny for non-target toxicological issues.
机译:蚊子和壁虱是影响人类和动物的几种疾病的媒介。通过使用化学杀虫剂/杀螨剂,主要可以控制蚊子传播和壁虱传播的疾病。但是,公众对常规合成化合物安全性的关注增加,同时对杀虫剂/杀螨剂的抗药性不断提高,因此需要寻找其他替代品来控制虱子和蚊子。在这篇论文中,我报道了来自南部牛tick(Rhipicephalus microplus)的酪胺受体的功能和药理学表征。此外,我报道了植物精油萜类化合物与南方牛壁虱酪胺受体相互作用的作用。使用转录后基因沉默对南部牛壁虱酪胺受体的生理研究表明,南部牛壁虱酪胺受体是可能导致壁虱死亡的靶标。这些结果的意义在于,对南部牛tick的酪胺受体(以前被认为是章鱼胺受体)进行了重新分类,在南部牛tick中鉴定了植物萜类化合物的潜在新靶标,并解释了其潜在作用。对甲cattle的耐药性,在南部牛am中已有报道。最后,我介绍了精油增强合成拟除虫菊酯苄氯菊酯对两种蚊子(埃及伊蚊和冈比亚按蚊)的毒性和/或抑制作用的能力。毒性和击倒作用的增强与商业增效剂胡椒基丁醇(PBO)相似,但在许多情况下要好得多。这些发现的意义包括使用自然控制措施替代PBO的能力,PBO已针对非目标毒理学问题进行了审查。

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    Gross Aaron Donald;

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  • 年度 2014
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