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首页> 外文期刊>Ecology and Evolution >Inter-assemblage facilitation: the functional diversity of cavity-producing beetles drives the size diversity of cavity-nesting bees
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Inter-assemblage facilitation: the functional diversity of cavity-producing beetles drives the size diversity of cavity-nesting bees

机译:组件间的便利:产生腔的甲虫的功能多样性驱动着腔巢式蜜蜂的大小多样性

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Abstract Inter-specific interactions are important drivers and maintainers of biodiversity. Compared to trophic and competitive interactions, the role of non-trophic facilitation among species has received less attention. Cavity-nesting bees nest in old beetle borings in dead wood, with restricted diameters corresponding to the body size of the bee species. The aim of this study was to test the hypothesis that the functional diversity of cavity-producing wood boring beetles - in terms of cavity diameters - drives the size diversity of cavity-nesting bees. The invertebrate communities were sampled in 30 sites, located in forested landscapes along an elevational gradient. We regressed the species richness and abundance of cavity nesting bees against the species richness and abundance of wood boring beetles, non-wood boring beetles and elevation. The proportion of cavity nesting bees in bee species assemblage was regressed against the species richness and abundance of wood boring beetles. We also tested the relationships between the size diversity of cavity nesting bees and wood boring beetles. The species richness and abundance of cavity nesting bees increased with the species richness and abundance of wood boring beetles. No such relationship was found for non-wood boring beetles. The abundance of wood boring beetles was also related to an increased proportion of cavity nesting bee individuals. Moreover, the size diversity of cavity-nesting bees increased with the functional diversity of wood boring beetles. Specifically, the mean and dispersion of bee body sizes increased with the functional dispersion of large wood boring beetles. The positive relationships between cavity producing bees and cavity nesting bees suggest that non-trophic facilitative interactions between species assemblages play important roles in organizing bee species assemblages. Considering a community-wide approach may therefore be required if we are to successfully understand and conserve wild bee species assemblages in forested landscapes.
机译:摘要种间相互作用是生物多样性的重要驱动者和维护者。与营养相互作用和竞争相互作用相比,物种间非营养促进作用的关注较少。巢穴式蜜蜂在枯木的老甲虫钻孔中筑巢,其直径受限制,与蜜蜂的体型相对应。这项研究的目的是检验以下假说,即产生蛀牙的木甲虫的功能多样性(就蛀洞直径而言)驱动着蛀洞蜂的大小多样性。在海拔梯度位于森林景观中的30个地点对无脊椎动物群落进行了采样。我们对空巢蜜蜂的物种丰富度和丰度与木无聊甲虫,非木无聊甲虫的物种丰富度和海拔进行了回归。巢穴蜜蜂在蜜蜂物种集合中的比例与木虫的物种丰富度和丰度相反。我们还测试了腔巢蜂的大小多样性与枯木甲虫之间的关系。空巢巢蜂的物种丰富度和丰度随着木ing虫的物种丰富度和丰度的增加而增加。对于非木材无聊的甲虫,没有发现这种关系。木材无聊甲虫的丰富还与增加巢穴蜂个体比例有关。此外,随着木甲虫功能的多样性,空巢蜂的大小多样性也随之增加。具体而言,蜜蜂体大小的平均值和分散度随大型木钻甲虫的功能分散而增加。产生蛀牙的蜜蜂与筑巢蜜蜂之间的正相关关系表明,物种组合之间的非营养性促进相互作用在组织蜜蜂物种组合中起重要作用。因此,如果我们要成功地理解和保护森林景观中的野生蜂种组合,则可能需要考虑采用整个社区的方法。

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