Plant-Insect Interactions, TUM School of Life Science Systems, Technical University of Munich, Freising, Germany.
Department for Animal Ecology and Tropical Biology, Biocenter, University of Würzburg, Am Hubland, 97074 Würzburg, Germany.
Philos Trans R Soc Lond B Biol Sci. 2022 Jun 20;377(1853):20210171. doi: 10.1098/rstb.2021.0171. Epub 2022 May 2.
Bee performance and well-being strongly depend on access to sufficient and appropriate resources, in particular pollen and nectar of flowers, which constitute the major basis of bee nutrition. Pollen-derived microbes appear to play an important but still little explored role in the plant pollen-bee interaction dynamics, e.g. through affecting quantities and ratios of important nutrients. To better understand how microbes in pollen collected by bees may affect larval health through nutrition, we investigated correlations between the floral, bacterial and nutritional composition of larval provisions and the gut bacterial communities of the solitary megachilid bee . Our study reveals correlations between the nutritional quality of pollen provisions and the complete bacterial community as well as individual members of both pollen provisions and bee guts. In particular pollen fatty acid profiles appear to interact with specific members of the pollen bacterial community, indicating that pollen-derived bacteria may play an important role in fatty acid provisioning. As increasing evidence suggests a strong effect of dietary fatty acids on bee performance, future work should address how the observed interactions between specific fatty acids and the bacterial community in larval provisions relate to health in . This article is part of the theme issue 'Natural processes influencing pollinator health: from chemistry to landscapes'.
蜜蜂的表现和健康状况强烈依赖于获得充足和适当的资源,特别是花粉和花蜜,它们构成了蜜蜂营养的主要基础。花粉衍生的微生物在植物花粉-蜜蜂相互作用动态中似乎起着重要但仍未被充分探索的作用,例如通过影响重要营养物质的数量和比例。为了更好地了解蜜蜂采集的花粉中的微生物如何通过营养影响幼虫的健康,我们调查了幼虫食物的花、细菌和营养成分与独居巨型蜜蜂肠道细菌群落之间的相关性。我们的研究揭示了花粉食物的营养质量与完整细菌群落以及花粉食物和蜜蜂肠道的个体成员之间的相关性。特别是花粉脂肪酸谱似乎与花粉细菌群落的特定成员相互作用,表明花粉衍生的细菌可能在脂肪酸供应中发挥重要作用。由于越来越多的证据表明饮食脂肪酸对蜜蜂表现有强烈影响,未来的工作应该解决在幼虫食物中观察到的特定脂肪酸与细菌群落之间的相互作用与健康的关系。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”的一部分。