Institute of Environmental Sciences, Jagiellonian University, Gronostajowa 7, 30-387, Kraków, Poland.
Birmingham Institute of Forest Research, University of Birmingham, Edgbaston, Birmingham, B15 2TT, England.
Oecologia. 2024 Oct;206(1-2):101-114. doi: 10.1007/s00442-024-05610-2. Epub 2024 Sep 8.
Increasing atmospheric CO levels change the elemental composition in plants, altering their nutritional quality and affecting consumers and ecosystems. Ecological stoichiometry provides a framework for investigating how CO-driven nutrient dilution in pollen affects bees by linking changes in pollen chemical element proportions to the nutritional needs of bees. We investigated the consequences of five years of Free Air CO Enrichment (FACE) in a mature oak-dominated temperate forest on the elemental composition of English oak (Quercus robur) pollen. We measured the concentrations and proportions of 12 elements (C, N, P, S, K, Na, Ca, Mg, Cu, Zn, Fe, and Mn) in Q. robur pollen-bearing flowers collected from the Birmingham Institute for Forest Research (BIFoR) FACE facility. An elevated CO (eCO) level of 150 ppm above ambient significantly reduced the S, K, and Fe levels and altered the multi-element ratio, with different elements behaving differently. This shift in pollen multi-element composition may have subsequent cascading effects on higher trophic levels. To assess the impact on bees, we calculated the stoichiometric mismatch (a measure of the discrepancy between consumer needs and food quality) for two bee species, Osmia bicornis (red mason bee) and Apis mellifera (honey bee), that consume oak pollen in nature. We observed stoichiometric mismatches for P and S, in pollen under eCO, which could negatively affect bees. We highlight the need for a comprehensive understanding of the changes in pollen multi-element stoichiometry under eCO, which leads to nutrient limitations under climate change with consequences for bees.
大气 CO 水平的升高会改变植物中的元素组成,改变其营养价值,并影响消费者和生态系统。生态化学计量学为研究花粉中 CO 驱动的养分稀释如何通过将花粉化学元素比例的变化与蜜蜂的营养需求联系起来来影响蜜蜂提供了一个框架。我们调查了在成熟的栎树占主导地位的温带森林中,五年的自由空气 CO 富集 (FACE) 对英国栎树 (Quercus robur) 花粉元素组成的影响。我们测量了在伯明翰森林研究所 (BIFoR) FACE 设施中采集的含有栎树花粉的花朵中 12 种元素 (C、N、P、S、K、Na、Ca、Mg、Cu、Zn、Fe 和 Mn) 的浓度和比例。大气中 CO 浓度升高 150ppm,显著降低了 S、K 和 Fe 水平,并改变了多元素比例,不同元素的表现不同。这种花粉多元素组成的变化可能会对更高营养级产生后续级联效应。为了评估对蜜蜂的影响,我们计算了两种蜜蜂物种的化学计量不匹配(衡量消费者需求与食物质量之间差异的指标),Osmia bicornis(红泥蜂)和 Apis mellifera(蜜蜂),它们在自然界中消耗栎树花粉。我们观察到 eCO 下花粉中 P 和 S 的化学计量不匹配,这可能会对蜜蜂产生负面影响。我们强调需要全面了解 eCO 下花粉多元素化学计量的变化,这会导致气候变化下的养分限制,从而对蜜蜂产生影响。