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Organic Farming: Biodiversity Impacts Can Depend on Dispersal Characteristics and Landscape Context

机译:有机农业:生物多样性影响可能取决于分散特征和景观环境

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摘要

Organic farming, a low intensity system, may offer benefits for a range of taxa, but what affects the extent of those benefits is imperfectly understood. We explored the effects of organic farming and landscape on the activity density and species density of spiders and carabid beetles, using a large sample of paired organic and conventional farms in the UK. Spider activity density and species density were influenced by both farming system and surrounding landscape. Hunting spiders, which tend to have lower dispersal capabilities, had higher activity density, and more species were captured, on organic compared to conventional farms. There was also evidence for an interaction, as the farming system effect was particularly marked in the cropped area before harvest and was more pronounced in complex landscapes (those with little arable land). There was no evidence for any effect of farming system or landscape on web-building spiders (which include the linyphiids, many of which have high dispersal capabilities). For carabid beetles, the farming system effects were inconsistent. Before harvest, higher activity densities were observed in the crops on organic farms compared with conventional farms. After harvest, no difference was detected in the cropped area, but more carabids were captured on conventional compared to organic boundaries. Carabids were more species-dense in complex landscapes, and farming system did not affect this. There was little evidence that non-cropped habitat differences explained the farming system effects for either spiders or carabid beetles. For spiders, the farming system effects in the cropped area were probably largely attributable to differences in crop management; reduced inputs of pesticides (herbicides and insecticides) and fertilisers are possible influences, and there was some evidence for an effect of non-crop plant species richness on hunting spider activity density. The benefits of organic farming may be greatest for taxa with lower dispersal abilities generally. The evidence for interactions among landscape and farming system in their effects on spiders highlights the importance of developing strategies for managing farmland at the landscape-scale for most effective conservation of biodiversity.
机译:有机耕种是一种低强度的系统,可能会为一系列的分类单元带来好处,但是对影响这些好处的程度的理解却不尽人意。我们使用了英国大量有机和传统农场的配对样本,探索了有机农业和景观对蜘蛛和甲虫的活动密度和物种密度的影响。蜘蛛的活动密度和物种密度都受到耕作系统和周围景观的影响。与传统农场相比,狩猎蜘蛛通常具有较低的分散能力,具有较高的活动密度,并捕获了更多种类的有机蜘蛛。也有相互作用的证据,因为耕作制度的影响在收获前的收成地区尤为明显,而在复杂的景观(耕地少的地区)中则更为明显。没有证据表明耕作系统或景观对建网蜘蛛(包括蜘蛛形蜘蛛,其中许多具有很高的传播能力)有任何影响。对于甲壳虫,耕作系统的效果不一致。收获前,有机农场的农作物活动密度比常规农场高。收获后,在种植区域未发现差异,但与有机边界相比,常规捕获的钩子更多。在复杂的景观中,锁钩的物种更密集,而耕作制度对此没有影响。几乎没有证据表明非作物生境的差异解释了蜘蛛或甲虫对耕作制度的影响。对于蜘蛛来说,在耕种地区的耕作制度影响可能主要归因于作物管理的差异。减少农药(除草剂和杀虫剂)和肥料的投入是可能的影响,并且有一些证据表明非作物植物物种丰富度对狩猎蜘蛛的活动密度有影响。通常,有机耕作的益处对于分散能力较低的分类单元可能是最大的。景观和耕作系统之间的相互作用对蜘蛛的影响的证据突显了制定战略以景观尺度管理农田以最有效地保护生物多样性的重要性。

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