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Modeling Pollinator Community Response to Contrasting Bioenergy Scenarios

机译:模拟授粉媒介对不同生物能源情景的反应

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摘要

In the United States, policy initiatives aimed at increasing sources of renewable energy are advancing bioenergy production, especially in the Midwest region, where agricultural landscapes dominate. While policy directives are focused on renewable fuel production, biodiversity and ecosystem services will be impacted by the land-use changes required to meet production targets. Using data from field observations, we developed empirical models for predicting abundance, diversity, and community composition of flower-visiting bees based on land cover. We used these models to explore how bees might respond under two contrasting bioenergy scenarios: annual bioenergy crop production and perennial grassland bioenergy production. In the two scenarios, 600,000 ha of marginal annual crop land or marginal grassland were converted to perennial grassland or annual row crop bioenergy production, respectively. Model projections indicate that expansion of annual bioenergy crop production at this scale will reduce bee abundance by 0 to 71%, and bee diversity by 0 to 28%, depending on location. In contrast, converting annual crops on marginal soil to perennial grasslands could increase bee abundance from 0 to 600% and increase bee diversity between 0 and 53%. Our analysis of bee community composition suggested a similar pattern, with bee communities becoming less diverse under annual bioenergy crop production, whereas bee composition transitioned towards a more diverse community dominated by wild bees under perennial bioenergy crop production. Models, like those employed here, suggest that bioenergy policies have important consequences for pollinator conservation.
机译:在美国,旨在增加可再生能源来源的政策举措正在促进生物能源生产,特别是在农业景观占主导地位的中西部地区。虽然政策指令的重点是可再生燃料的生产,但生物多样性和生态系统服务将受到实现生产目标所需的土地用途变化的影响。利用来自实地观察的数据,我们开发了基于土地覆盖率预测访花蜂的丰度,多样性和群落组成的经验模型。我们使用这些模型来探索蜜蜂如何在两种不同的生物能源情景下做出反应:年度生物能源作物产量和多年生草地生物能源产量。在这两种情况下,分别将600,000公顷的年度边际耕地或边缘草原转化为多年生草地或年度行作作物生物能源生产。模型预测表明,根据地点的不同,这种规模的年度生物能源作物产量的增长将使蜜蜂的丰度降低0%至71%,蜜蜂的多样性降低0%至28%。相比之下,将边缘土壤上的一年生作物转变为多年生草地可以将蜂的丰度从0增加到600%,并使蜂的多样性增加0到53%。我们对蜜蜂群落组成的分析表明了类似的模式,在年度生物能源作物生产下蜜蜂群落的多样性变少了,而在多年生生物能源作物生产下蜜蜂组成向以野生蜂为主的更加多样化的群落过渡。像此处采用的模型一样,模型表明生物能源政策对传粉媒介的保护具有重要影响。

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