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Supporting crop pollinators with floral resources: network-based phenological matching

机译:用花卉资源为作物授粉媒介提供支持:基于网络的物候匹配

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摘要

The production of diverse and affordable agricultural crop species depends on pollination services provided by bees. Indeed, the proportion of pollinator-dependent crops is increasing globally. Agriculture relies heavily on the domesticated honeybee; the services provided by this single species are under threat and becoming increasingly costly. Importantly, the free pollination services provided by diverse wild bee communities have been shown to be sufficient for high agricultural yields in some systems. However, stable, functional wild bee communities require floral resources, such as pollen and nectar, throughout their active season, not just when crop species are in flower. To target floral provisioning efforts to conserve and support native and managed bee species, we apply network theoretical methods incorporating plant and pollinator phenologies. Using a two-year dataset comprising interactions between bees (superfamily Apoidea, Anthophila) and 25 native perennial plant species in floral provisioning habitat, we identify plant and bee species that provide a key and central role to the stability of the structure of this community. We also examine three specific case studies: how provisioning habitat can provide temporally continuous support for honeybees (Apis mellifera) and bumblebees (Bombus impatiens), and how resource supplementation strategies might be designed for a single genus of important orchard pollinators (Osmia). This framework could be used to provide native bee communities with additional, well-targeted floral resources to ensure that they not only survive, but also thrive.
机译:各种价格合理的农作物的生产取决于蜜蜂提供的授粉服务。实际上,全球依赖传粉媒介的作物比例正在增加。农业严重依赖驯养的蜜蜂;这种单一物种所提供的服务正受到威胁,并变得越来越昂贵。重要的是,在某些系统中,各种野生蜂社区提供的免费授粉服务已足以实现高农业产量。但是,功能稳定的野生蜂群落在整个活动季节都需要花资源,例如花粉和花蜜,而不仅是在农作物上开花。为了针对养护和保护本地和管理蜜蜂物种的花卉供应工作,我们采用结合植物和授粉媒介物候学的网络理论方法。使用两年数据集,其中包括蜜蜂(超家族Apoidea,Anthophila)与花卉供应栖息地中的25种多年生多年生植物物种之间的相互作用,我们确定了对这一群落结构的稳定性起关键和关键作用的植物和蜜蜂物种。我们还研究了三个具体的案例研究:如何为栖息地(蜜蜂)和大黄蜂(凤仙花)提供临时栖息地支持,以及如何为重要的果园授粉媒介(奥斯曼)的单个属设计资源补充策略。该框架可用于为本地蜜蜂社区提供其他针对性强的花卉资源,以确保它们不仅生存,而且繁衍生息。

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