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首页> 外文期刊>The Journal of Applied Ecology >How wild bees find a way in European cities: Pollen metabarcoding unravels multiple feeding strategies and their effects on distribution patterns in four wild bee species
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How wild bees find a way in European cities: Pollen metabarcoding unravels multiple feeding strategies and their effects on distribution patterns in four wild bee species

机译:野生蜜蜂如何找到一种方法在欧洲城市:花粉metabarcoding拆解多个喂养策略及其对分布的影响模式4个野生蜜蜂种类

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Abstract Urban ecosystems can sustain populations of wild bees, partly because of their rich native and exotic floral resources. A better understanding of the urban bee diet, particularly at the larval stage, is necessary to understand biotic interactions and feeding behaviour in urban ecosystems, and to promote bees by improving the management of urban floral resources. We investigated the larval diet and distribution patterns of four solitary wild bee species with different diet specialization (i.e. Chelostoma florisomne, Osmia bicornis, Osmia cornuta and Hylaeus communis) along urban intensity gradients in five European cities (Antwerp, Paris, Poznan, Tartu and Zurich) using two complementary analyses. Specifically, using trap‐nests and pollen metabarcoding techniques, we characterized the species' larval diet, assessed diet consistency across cities and modelled the distribution of wild bees using species distribution models (SDMs). Our results demonstrate that urban wild bees display different successful strategies to exploit existing urban floral resources: not only broad generalism (i.e. H. communis) but also intermediate generalism, with some degree of diet conservatism at the plant family or genus level (i.e. O. cornuta and O. bicornis), or even strict specialization on widely available urban pollen hosts (i.e. C. florisomne). Furthermore, we detected important diet variation in H. communis, with a switch from an herbaceous pollen diet to a tree pollen diet with increasing urban intensity. Species distribution modelling indicated that wild bee distribution ranges inside urban ecosystems ultimately depend on their degree of specialization, and that broader diets result in less sensitivity to urban intensity. Policy implications. Satisfying larval dietary requirements is critical to preserving and enhancing wild bee distributions within urban gradients. For high to intermediate levels of feeding specialization, we found considerable consistency in the preferred plant families or genera across the studied cities, which could be generalized to other cities where these bees occur. Identifying larval floral preferences (e.g. using pollen metabarcoding) could be helpful for identifying key plant taxa and traits for bee survival and for improving strategies to develop bee‐friendly cities.
机译:摘要城市生态系统能够维持种群野生蜜蜂,部分原因是他们丰富的本地和异国情调的植物资源。对城市的理解蜜蜂的饮食,特别在幼虫阶段,理解是必要的生物和喂养行为的交互城市生态系统,促进蜜蜂改善城市花卉的管理资源。分布模式的四个孤独的野蜜蜂与不同的饮食专业化(即物种。Chelostoma florisomne,壁蜂采bicornis,壁蜂采cornuta和都市跟着Hylaeus communis)强度梯度在五个欧洲城市(安特卫普、巴黎、波兹南、塔尔图和苏黎世)使用两个互补的分析。陷阱的巢穴和花粉metabarcoding技术,我们物种的特征幼虫的饮食,评估饮食城市和一致性模仿野生蜜蜂的分布物种分布模型(sdm)。证明城市野生蜜蜂显示利用不同的成功策略现有城市花卉资源:不仅广泛generalism(即h .普通的),但也中间generalism,某种程度的饮食核电站的保守主义家庭或属水平(即o .冬青和o . bicornis),甚至是严格的专业化城市花粉在广泛使用主机(例如c . florisomne)。发现重要的h .普通的饮食差异,开关从一个草本花粉的饮食树花粉饮食与城市强度增加。物种分布模型表示野生蜜蜂分布范围内的城市生态系统最终取决于他们的程度专业化,更广泛的饮食导致城市强度不太敏感。的影响。保存和需求是至关重要的加强野生蜜蜂分布在城市梯度。喂养专业化,我们发现相当大在首选植物家庭或一致性属在研究城市,这可能是推广到其他城市,这些蜜蜂发生。(如使用花粉metabarcoding)有助于识别关键植物类群和特征蜜蜂的生存和改善策略发展蜜蜂还是友好城市。

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