首页> 美国卫生研究院文献>Journal of Insect Science >Field Evaluation of a Binary Sex Pheromone for Sweetpotato Vine Borer (Lepidoptera: Crambidae) in Hawaii
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Field Evaluation of a Binary Sex Pheromone for Sweetpotato Vine Borer (Lepidoptera: Crambidae) in Hawaii

机译:在夏威夷的甘薯钻Bor(鳞翅目:龟科)二元信息素的现场评估。

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摘要

The sweetpotato vine borer, Omphisa anastomosalis (Guenée), is a primarily Asian pest of sweetpotato, Ipomoea batatas L. Damage by O. anastomosalis infestation can cause root yield losses of 30%–50%. A binary sex pheromone for O. anastomosalis, consisting of Type I [(10E,14E)-10,14-hexadecadienal (E10,E14-16:Ald)] and Type II [(3Z,6Z,9Z)-3,6,9-tricosatriene (Z3,Z6,Z9-23:H)] components, was identified in Vietnam from extracts of female pheromone glands. A structurally similar Type II compound [(3Z,6Z,9Z)-3,6,9-docosatriene (Z3,Z6,Z9-22:H)], not recovered from female pheromone glands, was also found to synergize the attractiveness of the Type I component. Additional field work has been needed to determine whether these synergistic enhancements of attractiveness also occur in other parts of the geographical distribution of this moth species. Herein, results of studies are reported which document that both Z3,Z6,Z9-23:H and Z3,Z6,Z9-22:H also synergistically enhance male response to E10,E14-16:Ald in Hawaii sweetpotato field populations. Trap catch tends to be enhanced with increase of dose and lower Type I:Type II ratios. Among the compound doses and ratios tested, trap catch increased with the addition of the Type II component by over 13 times relative to traps baited with the Type I component alone, which significantly enhanced sweetpotato vine borer detection. Using a 2.0 mg: 4.0 mg Type I: Type II loading, there was continued catch over 12 wk, during which time the Type I component weathered at a faster rate than the Type II component. This binary sex pheromone seems to have promise for both monitoring and suppression of field populations of O. anastomosalis throughout its geographical range.
机译:甘薯藤bore(Omphisa anastomosalis(Guenée))是甘薯的主要亚洲害虫,番薯(Ipomoea batatas L)。O. anastomosalis侵染会造成根产量损失30%–50%。吻合曲霉的二元性信息素,由I型[(10E,14E)-10,14-十六二烯(E10,E14-16:Ald)]和II型[(3Z,6Z,9Z)-3,6组成在越南从雌性信息素腺体的提取物中鉴定出[9,9-三茂三烯(Z3,Z6,Z9-23:H)]成分。还发现未从雌性信息素腺体中回收的结构相似的II型化合物[(3Z,6Z,9Z)-3,6,9-二十二碳三烯(Z3,Z6,Z9-22:H)]可以协同增强雌激素的吸引力。 I型组件。还需要进行其他现场工作,以确定这种吸引力的协同增效是否也发生在该蛾类物种地理分布的其他部分。在此,报道了研究结果,这些研究记录了在夏威夷甘薯田间种群中,Z3,Z6,Z9-23:H和Z3,Z6,Z9-22:H也协同增强了雄性对E10,E14-16:Ald的反应。陷阱捕获往往会随着剂量的增加和I型:II型比率的降低而增强。在所测试的化合物剂量和比例中,与单独使用I型成分诱饵的诱集装置相比,II型成分的诱捕量增加了13倍以上,这大大提高了甘薯藤bore虫的检测率。使用2.0 mg:4.0 mg I型:II型负载,连续捕获超过12周,在此期间,I型组分的风化速度比II型组分快。这种二元性信息素似乎有望在整个地理范围内监测和抑制吻口石O的野外种群。

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