John Krebs Field Station, Department of Zoology, University of Oxford, Oxford OX2 8QJ, UK.
Institute of Neuroscience, Newcastle University, Newcastle upon Tyne NE1 7RU, UK.
Philos Trans R Soc Lond B Biol Sci. 2022 Jun 20;377(1853):20210169. doi: 10.1098/rstb.2021.0169. Epub 2022 May 2.
Minerals are required in small amounts to sustain metabolic activity in animals, but mineral deficiencies can also lead to metabolic bottlenecks and mineral excesses can induce toxicity. For these reasons, we could reasonably expect that micronutrients are actively regulated around nutritional optima. Honeybees have co-evolved with flowering plants such that their main sources of nutrients are floral pollen and nectar. Like other insects, honeybees balance their intake of multiple macronutrients during food consumption using a combination of pre- and post-ingestive mechanisms. How they regulate their intake of micronutrients using these mechanisms has rarely been studied. Using two-choice feeding assays, we tested whether caged and broodless young workers preferred solutions containing individual salts (NaCl, KCl, CaCl, MgCl) or metals (FeCl, CuCl, ZnCl, MnCl) in a concentration-dependent manner. We found that young adult workers could only self-select and optimize their dietary intake around specific concentrations of sodium, iron and copper. Bees largely avoided high concentration mineral solutions to minimize toxicity. These experiments demonstrate the limits of the regulation of intake of micronutrients in honeybees. This is the first study to compare this form of behaviour in one organism for eight different micronutrients. This article is part of the theme issue 'Natural processes influencing pollinator health: from chemistry to landscapes'.
矿物质的需要量很小,就能维持动物的新陈代谢活动,但矿物质缺乏也会导致代谢瓶颈,矿物质过量会引起毒性。基于这些原因,我们可以合理地预期,微量元素会在营养最佳值附近被主动调节。蜜蜂与开花植物共同进化,因此它们的主要营养来源是花粉和花蜜。像其他昆虫一样,蜜蜂在进食过程中通过前摄和后摄机制来平衡多种宏量营养素的摄入。它们如何利用这些机制来调节微量元素的摄入,这方面的研究很少。通过双选择喂养实验,我们测试了有无幼虫的年轻工蜂是否会以浓度依赖的方式优先选择含有单个盐(NaCl、KCl、CaCl、MgCl)或金属(FeCl、CuCl、ZnCl、MnCl)的溶液。我们发现,年轻的成年工蜂只能自我选择并优化其对特定浓度的钠、铁和铜的饮食摄入。蜜蜂在很大程度上避免高浓度的矿物溶液,以最大程度减少毒性。这些实验证明了蜜蜂对微量元素摄入的调节存在限制。这是首次在一个生物体中比较 8 种不同微量元素的这种行为的研究。本文是主题为“影响传粉媒介健康的自然过程:从化学到景观”的特刊的一部分。