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首页> 外文期刊>The Journal of Applied Ecology >Quantifying the impacts of bioenergy crops on pollinating insect abundance and diversity: A field-scale evaluation reveals taxon-specific responses
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Quantifying the impacts of bioenergy crops on pollinating insect abundance and diversity: A field-scale evaluation reveals taxon-specific responses

机译:量化生物能源作物的影响传粉昆虫的丰度和多样性:A油田规模评价揭示taxon-specific反应

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Global declines in pollinating insects have been linked with agricultural intensification and land-use change. Increased production of novel crops for bioenergy is causing changes in agricultural practice, but the effects on different pollinating taxa have not yet been quantified. However, the major pollinating groups (social bees, solitary bees, hoverflies and butterflies) are likely to respond differently to changes in land use and shifts in crop cultivation patterns. We assessed the impacts of two bioenergy crops, oilseed rape Brassica napus L. and Miscanthus Miscanthus X giganteus on (i) the diversity and abundance of four taxonomic groups of pollinating insects, (ii) insect community composition, (iii) floral resources and (iv) nesting sites for bumblebees, by comparing bioenergy crops with conventional arable and grass crops in a large network of commercial fields. We found that although there were more bumblebees in oilseed rape fields, conventional crops and bioenergy crops did not differ greatly in species richness of most pollinator groups, although more floral resources were found in the bioenergy crops. However, solitary bees were more abundant and species rich in energy crops than conventional wheat, and more trap-nesting bees and wasps were found in Miscanthus than oilseed rape. In addition, novel assemblages of solitary bees were found in the bioenergy crops. All pollinator groups, and flowering plants, were more abundant in field margins than in the centre of crop fields. Although there were no differences among crop types, nest-searching bumblebees were confined to field margins. This highlights the importance of field margins as forage and nesting habitat for pollinators in farmland. Synthesis and applications. Differential responses to field-scale growth of bioenergy crops were displayed by the taxonomic groups studied, suggesting that effects on biodiversity cannot be generalized from studies based on a small suite of taxonomic groups and must include a range of taxa for overarching results. To optimize habitat for pollinators in agricultural areas, our data suggest that a diversity of crop types at small scales may have positive impacts and supports appropriate management and conservation of field margins and hedgerows during conversion to bioenergy production. Differential responses to field-scale growth of bioenergy crops were displayed by the taxonomic groups studied, suggesting that effects on biodiversity cannot be generalized from studies based on a small suite of taxonomic groups and must include a range of taxa for overarching results. To optimize habitat for pollinators in agricultural areas, our data suggest that a diversity of crop types at small scales may have positive impacts and supports appropriate management and conservation of field margins and hedgerows during conversion to bioenergy production.
机译:全球授粉昆虫已经下降与农业集约化和土地利用变化。生物能源作物造成的变化农业实践,但影响不同的授粉类群尚未量化。(社会蜜蜂,独居蜜蜂,花虻蝴蝶)可能会有不同的反应土地利用变化和作物的变化培养模式。两个生物能源作物,油菜的芸苔属植物显著l .芒草芒草X竹(我)四个分类的多样性和丰富组授粉昆虫,(ii)昆虫社区组成,(iii)和花卉资源(iv)为大黄蜂筑巢地点,通过比较与传统的耕地和生物能源作物草作物在一个大的商业网络字段。大黄蜂在油菜的领域,传统作物和生物能源作物并未有很大的不同在大多数授粉群体物种丰富度,尽管更多的花卉资源被发现生物能源作物。丰富,物种丰富的能源作物传统的小麦,更trap-nesting蜜蜂和黄蜂在芒草比油籽中被发现强奸。蜜蜂被发现在生物能源作物。授粉群体,和开花植物更丰富的领域利润中心农田。差异作物类型,觅巢大黄蜂仅限于领域的利润率。突出领域利润的重要性饲料和嵌套传粉昆虫的栖息地农田。油田规模增长的微分响应生物能源作物被分类显示组织研究,表明影响不能从研究广义生物多样性基于分类群和一间小套房必须包括一系列的分类群的吗结果。农业领域,我们的数据表明在小尺度作物类型的多样性积极影响和支持适当的管理和保护利润率和领域在转换为生物能源树篱生产。发展生物能源作物所显示分类群的研究,表明效果对生物多样性不能通用研究基于分类的小套房组织和必须包括一系列的分类单元总体的结果。传粉者在农业领域,我们的数据表明在小作物类型的多样性尺度也有积极的影响和支持适当的管理和保护的领域利润率和树篱在转换生物能源生产。

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