Bogaert Thierry, Reams Taylor, Maillet Isabelle, Kulhanek Kelly, Duyck Maarten, Eertmans Frank, Fauvel Anne Marie, Hopkins Brandon, Bogaert Jan
Apix Biosciences, Wingene 8750, Belgium.
Department of Entomology, Washington State University, Pullman, WA 99164-6382, USA.
Proc Biol Sci. 2025 Apr;292(2045):20243078. doi: 10.1098/rspb.2024.3078. Epub 2025 Apr 16.
A steady supply of nutritionally adequate pollen from diverse flower sources is crucial for honeybee colonies. However, climate instability, large-scale agriculture and the loss of flower-rich landscapes have made this supply scarce and unpredictable, threatening both apiculture and sustainable crop pollination. We developed a nutritionally complete pollen-replacing diet that supports continuous brood production from May to October in colonies without access to pollen. Omitting isofucosterol, the third most abundant sterol in honeybees, causes significant reductions in brood production and neuromuscular dysfunction in adults, identifying isofucosterol as a critical micronutrient. In contrast, omitting 24-methylene cholesterol-the most abundant honeybee sterol-does not significantly affect brood production, and surprisingly, bees remain viable without it. Colonies fed a commercial diet severely declined in brood production after 36 days and died out. In a season-long experiment investigating the commercial pollination of blueberry and sunflower fields, a treatment group fed the complete diet overcame the detrimental effects of nutritional stress, unlike colonies in 'No Diet' and 'Commercial Diet' groups. This study suggests that feeding a complete, pollen-replacing diet to nutritionally stressed colonies can address the root causes of honeybees' growing nutritional deficiencies, supporting their health and their vital pollination services.
稳定供应来自多种花源的营养充足的花粉对蜂群至关重要。然而,气候不稳定、大规模农业以及富含花卉景观的丧失使得这种供应变得稀缺且不可预测,威胁着养蜂业和可持续作物授粉。我们开发了一种营养全面的花粉替代饲料,可支持在无法获取花粉的蜂群中从5月到10月持续培育幼虫。去除蜜蜂体内第三丰富的甾醇异岩藻甾醇会导致幼虫产量显著下降以及成年蜜蜂出现神经肌肉功能障碍,这表明异岩藻甾醇是一种关键的微量营养素。相比之下,去除蜜蜂体内最丰富的甾醇24-亚甲基胆固醇对幼虫产量没有显著影响,而且令人惊讶的是,没有它蜜蜂仍能存活。喂食商业饲料的蜂群在36天后幼虫产量严重下降并灭绝。在一项为期一个季节的对蓝莓和向日葵田商业授粉的实验中,与“无饲料”和“商业饲料”组的蜂群不同,喂食完整饲料的处理组克服了营养压力的有害影响。这项研究表明,给营养压力大的蜂群喂食完整的花粉替代饲料可以解决蜜蜂日益严重的营养缺乏的根本原因,支持它们的健康及其至关重要的授粉服务。