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General principles of attraction and competitive attraction as revealed by large-cage studies of moths responding to sex pheromone

机译:大范围研究蛾对性信息素的反应表明了吸引力和竞争性吸引力的一般原理

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摘要

Knowledge of how insects are actually affected by sex pheromones deployed throughout a crop so as to disrupt mating has lacked a mechanistic framework sufficient for guiding optimization of this environmentally friendly pest-control tactic. Major hypotheses are competitive attraction, desensitization, and camouflage. Working with codling moths, Cydia pomonella, in field cages millions of times larger than laboratory test tubes and at substrate concentrations trillions of times less than those typical for enzymes, we nevertheless demonstrate that mating disruption sufficiently parallels enzyme (ligand) –substrate interactions so as to justify adoption of conceptual and analytical tools of biochemical kinetics. By doing so, we prove that commercial dispensers of codling moth pheromone first competitively attract and then deactivate males probably for the remainder of a night. No evidence was found for camouflage. We generated and now validate simple algebraic equations for attraction and competitive attraction that will guide optimization and broaden implementation of behavioral manipulations of pests. This analysis system also offers a unique approach to quantifying animal foraging behaviors and could find applications across the natural and social sciences.
机译:关于昆虫如何真正受到整个作物中分布的性信息素的影响,从而破坏交配的知识,缺乏足以指导这种环境友好的害虫控制策略优化的机制框架。主要假设是竞争性吸引力,脱敏和伪装。在田间笼中使用苹果co蛾(Cydia pomonella)蛾,比实验室试管大数百万倍,底物浓度比酶的典型浓度低数万亿倍,我们证明交配破坏与酶(配体)-底物相互作用充分平行证明采用生化动力学的概念和分析工具是合理的。通过这样做,我们证明了可能在一个晚上的余下时间内,商业化的苹果d蛾信息素分配器首先吸引并随后使雄性失去活性。没有发现伪装的证据。我们生成并现在验证了吸引和竞争吸引的简单代数方程式,这些方程式将指导优化并扩大对有害生物的行为操纵的实施。该分析系统还提供了一种量化动物觅食行为的独特方法,并且可以在自然科学和社会科学中找到应用。

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