首页> 外文期刊>The Journal of Applied Ecology >Pest control potential of adjacent agri-environment schemes varies with crop type and is shaped by landscape context and within-field position
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Pest control potential of adjacent agri-environment schemes varies with crop type and is shaped by landscape context and within-field position

机译:害虫控制相邻的潜力农耕环境规划把部分耕地退还作随作物类型并通过景观环境和形状within-field位置

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摘要

1. Increasing natural pest control in agricultural fields is an important aim of ecological intensification. Combined effects of landscape context and local placement of agri-environmental schemes (AES) on natural pest control and within-field distance functions of natural pest control agents have rarely been addressed but might affect the distribution of biocontrol providers. Importantly, it is currently unknown whether ecosystem services provided by adjacent AES are consistent for different crop types during crop rotation. 2. In this study, we assessed whether crop rotation from oilseed rape to cereals altered within-field distance functions of ground-dwelling predators from adjacent agri-environmental fields along a gradient in landscape context. Additionally, we recorded crop pests, predation rates, parasitoids as well as crop yields on a total of 30 study sites. 3. Distance functions varied between trophic levels: Carabid richness decreased while densities of carabid beetles, staphylinid beetles as well as crop yields increased towards the field centres. Distance functions of parasitoids and pests were modulated by the amount of semi-natural habitat in the surrounding landscape, while the effects of adjacent AES were limited. 4. Distance decay functions found for ground-dwelling predators in oilseed rape in the previous year were not always present in cereals. Increasing distance to the field edge also increased effects of crop rotation on carabid beetle assemblages, indicating a source habitat function of field edges. 5. Synthesis and applications. Distance functions of natural pest control are not universal and the effects of agri-environmental schemes (AES) in different adjacent crops during crop rotation vary and depend on ecological contrasts. A network of semi-natural habitats and spatially optimized AES habitats can benefit pest control in agricultural landscapes, but constraints as a result of crop type need to be addressed by annually targeted, spatial
机译:1. 字段是一个生态的重要目标强化。环境和当地agri-environmental配售计划(AES)自然虫害控制和within-field自然害虫的距离函数控制代理很少但解决可能会影响生物防除的分布提供者。生态系统提供的服务是否相邻AES为不同作物类型是一致的在轮作。评估是否从油菜轮作谷物改变within-field距离函数的陆生食肉动物沿着相邻agri-environmental字段在景观环境中梯度。记录作物害虫,捕食率,拟寄生物以及作物产量总计30研究网站。营养水平:步行虫丰富而下降密度的步行虫甲虫,staphylinid甲虫以及对作物产量增加领域的中心。和害虫被调制的半自然生境在周围景观,而相邻的AES的影响有限的。在油菜的陆生食肉动物去年并不总是存在于谷物。增加距离场边缘增加作物轮作对步行虫的影响甲虫组合,表明一个源的栖息地场边缘的函数。应用程序。控制并不是普遍的影响agri-environmental方案(AES)的不同在不同作物轮作和相邻作物取决于生态形成鲜明对比。半自然栖息地和空间优化的AES栖息地可以受益在农业害虫防治由于作物景观,但约束每年需要解决的目标类型,空间

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