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Distinguishing feral and managed honeybees (Apis mellifera) using stable carbon isotopes

机译:使用稳定的碳同位素区分野性和管理性蜜蜂(Apis mellifera)

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The ability to distinguish feral and managed honeybees (Apis mellifera) has applications in studies of population genetics, parasite transmission, pollination, interspecific interactions, and bee breeding. We evaluated a diagnostic test based on theoretical differences in stable carbon isotope ratios generated by supplemental feeding. We evaluated (1) if carbon isotope ratios can distinguish feral and managed honeybees and (2) the temporal persistence of the signal after discontinuation of supplemental feeding. We compared carbon isotope ratios from four types of experimental colonies: feral, managed with and without supplemental feed, and managed with C-13-labeled glucose added to supplemental feed. There was a significant difference between the isotopic signatures of colonies receiving supplemental feed and unfed feral colonies. This difference, however, only persisted for a few weeks after supplemental feeding was discontinued, suggesting that this method may work best under a narrow range of conditions. This work highlights the potential for exploiting temporal turnover of carbon in bee tissues as a tool for studying nutrient flow in honeybee colonies
机译:区分野生蜜蜂和管理蜜蜂(蜜蜂)的能力已应用于种群遗传学,寄生虫传播,授粉,种间相互作用和蜜蜂育种的研究。我们根据补充喂养产生的稳定碳同位素比的理论差异评估了诊断测试。我们评估了(1)碳同位素比是否可以区分野生蜜蜂和管理蜜蜂,以及(2)停止补充饲喂后信号的时间持久性。我们比较了四种实验菌落的碳同位素比率:野生,添加和不添加饲料,以及添加了C-13标记葡萄糖的饲料。接受补充饲料的菌落和未喂养的野生菌落之间的同位素特征存在显着差异。但是,这种差异仅在停止补充喂养后持续了几周,这表明该方法在狭窄的条件下可能效果最好。这项工作强调了利用蜜蜂组织中碳的暂时转换作为研究蜜蜂群体中养分流的工具的潜力。

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