首页> 外文OA文献 >Manipulating within-orchard and adjacent habitats to provide better pest control in organic orchards. Some elements for modulating “orchard tree-pest-natural enemy” relationships
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Manipulating within-orchard and adjacent habitats to provide better pest control in organic orchards. Some elements for modulating “orchard tree-pest-natural enemy” relationships

机译:操纵果园内和附近的栖息地,以更好地控制有机果园中的害虫。调节“果园树-虫-天敌”关系的一些要素

摘要

The control of pests in organic orchards cannot solely rely on the use of direct control methods. The effect of manipulating the habitat of orchard pests and natural enemies through tree architecture and the increase of plant diversity has been investigated in an experimental organic apple orchard and in a pear orchard, in order to provide information about the potential benefits of these cultural practices. Tree training affected the development of the most detrimental pests of apple trees, and the centrifugal training system globally provided better aphid (Dysaphis plantaginea) and mite (Panonychus ulmi) control than the more classical Solaxe system, whereas codling moth (Cydia pomonella) was favoured compared to Solaxe. The study of an experimental hedgerow designed to optimise protection of the pear orchard allowed us to validate the basic principles of designing plant assemblages to increase plant diversity in the orchard surroundings, namely the introduction of a succession of resources favouring the natural enemies of the key orchard pests, and to avoid detrimental effects (pests or diseases shared with the crops). This experiment and other studies suggest that manipulating the plant diversity adjacent to the orchard has an effect on entomocenosis. However, the potential benefits for the orchard only concern the control of pests that can be tolerated at high infestation rates.
机译:对有机果园中害虫的控制不能仅依靠直接控制方法的使用。在实验性的有机苹果园和梨园中,已经研究了通过树木结构操纵果园害虫和天敌栖息地的效果以及植物多样性的增加,以便提供有关这些文化习俗的潜在益处的信息。树木训练影响了苹果树上最有害的害虫的生长,与更传统的Solaxe系统相比,离心训练系统在全球范围内提供了更好的蚜虫(Dysaphis plantaginea)和螨虫(Panonychus ulmi)控制,而co蛾(Cydia pomonella)受到青睐。与Solaxe相比。对旨在优化梨园保护的实验性树篱的研究使我们能够验证设计植物组合以增加果园周围植物多样性的基本原理,即引入一系列有利于主要果园天敌的资源害虫,并避免有害影响(与农作物共患病)。该实验和其他研究表明,操纵果园附近的植物多样性对肠虫病有影响。但是,果园的潜在利益仅涉及对害虫的控制,这些害虫在高侵染率下可以被忍受。

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