...
首页> 外文期刊>MethodsX >An in vitro ULV olfactory bioassay method for testing the repellent activity of essential oils against moths
【24h】

An in vitro ULV olfactory bioassay method for testing the repellent activity of essential oils against moths

机译:体外ULV嗅觉生物测定法,用于测试香精油对蛾的驱避活性

获取原文

摘要

A prototype olfactory device was developed and used for first time to study the bioactivity of Ultra Low Volumes (ULV) of three essential oilsagainst the moth pestAnarsia lineatella(Lepidoptera: Gelechiidae). Particle sizes calibration and standard ULV time-doses range tests were performed prior the olfactory bioassays. Three essential oils were testedCymbopogon citratus(Lemon Grass),Gaultheria procumbens(Winter Grass) andRosmarinus officinalis(Rosmarin) according to the proposed method. The most active oil was that ofR. officinalisand moths expressed approximately 3–5 fold faster moving behavior (50% repellence response times to ULV, RT50: 20–30?min) compared toG. procumbens(RT50:74–79?min) andC. citratus(RT50:82–96?min). Apart from direct observed repellence, moths sprayed with ULV show clearly signs of knock down symptoms and high fatality in a period 15–60?min after their treatment especial in the case ofR. officinalis. Longevity of female moths was significantly affected by the initial ULV application. Furthermore, choice test showed that essential oils significantly deterred oviposition in most cases. Considering the urgent need for alternative to conventional pesticides the current work may provide a framework of testing the bioactivity of bio rational compounds in the form of ULV and under Lab conditions.
机译:研发了原型嗅觉装置,并首次用于研究三种低油类超低容量(ULV)对抗蛾类害虫纳那氏线虫(鳞翅目:鳞翅目)的生物活性。在嗅觉生物测定之前进行粒度校准和标准ULV时间剂量范围测试。根据拟议的方法,对三种香精油进行了测试:柠檬香茅(Cymbopogon citratus,柠檬草),刺槐(Gaultheria procumbens,冬草)和迷迭香(Rosmarinus officinalis,Rosmarin)。活性最高的油是R。与G相比,厚朴和飞蛾的移动行为快约3–5倍(对ULV的排斥反应时间为50%,RT50:20–30分钟)。 procumbens(RT50:74–79?min)和C。柠檬酸盐(RT50:82–96?min)。除了直接观察到的驱避作用外,用ULV喷洒的飞蛾在特别是R的治疗后的15-60分钟内,表现出明显的击倒症状和高致死率。厚朴。最初使用ULV会显着影响雌性飞蛾的寿命。此外,选择测试表明,在大多数情况下,精油可以显着阻止排卵。考虑到对传统农药替代品的迫切需求,当前的工作可能会提供一个框架,以ULV形式并在实验室条件下测试生物合理化合物的生物活性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号