首页> 外文期刊>Bulletin of Entomological Research >Crop cover the principal influence on non-crop ground beetle (Coleoptera, Carabidae) activity and assemblages at the farm scale in a long-term assessment
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Crop cover the principal influence on non-crop ground beetle (Coleoptera, Carabidae) activity and assemblages at the farm scale in a long-term assessment

机译:在长期评估中,农作物涵盖了对农场规模的非农作物甲虫(鞘翅目,甲壳纲)活动和组合的主要影响

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Ground beetle data were generated using pitfall traps in the 17-year period from 1993 to 2009 and used to investigate the effects of changes in surrounding crop cover on beetle activity and assemblages, together with the effects of weather variability. Beetles were recorded from non-crop field margins (overgrown hedges). Crop cover changes explained far more variation in the beetle assemblages recorded than did temperature and rainfall variation. A reduction in management intensity and disturbance in the crops surrounding the traps, especially the introduction and development of willow coppice, was concomitant with changes in individual species activity and assemblage composition of beetles trapped in non-crop habitat. There were no consistent patterns in either overall beetle activity or in the number of species recorded over the 17-year period, but there was a clear change from assemblages dominated by smaller species with higher dispersal capability to ones with larger beetles with less dispersal potential and a preference for less disturbed agroecosystems. The influence of surrounding crops on ground beetle activity in non-crop habitat has implications for ecosystem service provision by ground beetles as pest predators. These results are contrary to conventional assumptions and interpretations, which suggest activity of pest predators in crops is influenced primarily by adjacent non-crop habitat. The long-term nature of the assessment was important in elucidation of patterns and trends, and indicated that policies such as agri-environment schemes should take cropping patterns into account when promoting management options that are intended to enhance natural pest control.
机译:地面甲虫数据是使用1993年至2009年这17年的陷阱陷阱生成的,用于调查周围农作物覆盖变化对甲虫活动和组合的影响以及天气多变性的影响。从非作物田间边缘(篱笆丛生)记录了甲虫。作物覆盖率的变化比温度和降雨的变化解释的要多得多。诱捕器周围农作物的管理强度降低和干扰减少,尤其是柳树小灌木林的引入和发展,与非作物生境中被捕捕的甲虫的个体物种活动和组合组成发生变化。在17年的时间里,甲虫的总体活动或记录的物种数量都没有一致的规律,但是从具有较高散布能力的较小物种为主的组合到具有较低散布潜力的较大甲虫的明显变化是明显的。偏爱较少受到干扰的农业生态系统。周围农作物对非作物生境中甲虫活动的影响,对作为害虫捕食者的甲虫提供生态系统服务产生了影响。这些结果与传统的假设和解释相反,传统的假设和解释表明,农作物中害虫捕食者的活动主要受相邻的非作物生境影响。评估的长期性质对于阐明模式和趋势很重要,并指出在推广旨在加强自然害虫控制的管理方案时,应考虑诸如农业环境计划等政策。

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