首页> 外文期刊>Communications in Agricultural and Applied Biological Sciences >NEW DISPENSER TYPES FOR INTEGRATED PEST MANAGEMENT OF AGRICULTURALLY SIGNIFICANT INSECT PESTS: AN ALGORITHM WITH SPECIALIZED SEARCHING CAPACITY IN ELECTRONIC DATA BASES
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NEW DISPENSER TYPES FOR INTEGRATED PEST MANAGEMENT OF AGRICULTURALLY SIGNIFICANT INSECT PESTS: AN ALGORITHM WITH SPECIALIZED SEARCHING CAPACITY IN ELECTRONIC DATA BASES

机译:农业重大昆虫害虫综合害虫管理的新型分配器类型:一种具有电子数据库中特定搜索能力的算法

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摘要

Pheromone effects discovered some 130 years, but scientifically defined just half a century ago, are a great bonus for basic and applied biology. Specifically, pest management efforts have been advanced in many insect orders, either for purposes or monitoring, mass trapping, or for mating disruption. Finding and applying a new search algorithm, nearly 20,000 entries in the pheromone literature have been counted, a number much higher than originally anticipated.This compilation contains identified and thus synthesizable structures for all major orders of insects. Among them are hundreds of agriculturally significant insect pests whose aggregated damages and costly control measures range in the multibillions ofdollars annually.Unfortunately, and despite a lot of effort within the international entomological scene, the number of efficient and cheap engineering solutions for dispensing pheromones under variable field conditions is uncomfortably lagging behind. Some innovative approaches are cited from the relevant literature in an attempt to rectify this situation. Recently, specifically designed electrospun organic nanofibers offer a lot of promise. With their use, the mating communication of vineyard insects like Lobesia botrana (Lep.: Tortricidae) can be disrupted for periods of seven weeks.
机译:信息素效应发现了大约130年,但在半个世纪前就被科学定义,对于基础生物学和应用生物学而言,这是一个巨大的收获。具体而言,已在许多昆虫订单中推进了有害生物管理工作,无论是出于目的还是监视,大规模诱捕或为了破坏交配。找到并应用了一种新的搜索算法后,已在信息素文献中找到了将近20,000个条目,这一数字比最初预期的要高得多。该汇编包含已确定并因此可用于所有主要昆虫纲的合成结构。其中有数百种具有农业重要意义的害虫,其害虫和破坏措施的总损失每年达数十亿美元。不幸的是,尽管在国际昆虫学领域做出了许多努力,但用于分配信息素的有效而廉价的工程解决方案的数量却不尽相同现场条件令人不快地落后了。从相关文献中引用了一些创新方法来试图纠正这种情况。最近,专门设计的静电纺有机纳米纤维提供了很多希望。通过使用,可能会破坏葡萄园昆虫(如波希贝斯(Lobesia botrana))的交配通讯(持续7周)。

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