Frunze Olga, Kim Hyunjee, Lee Jeong-Hyeon, Kwon Hyung-Wook
Department of Life Sciences, Incheon National University, 119 Academy-ro, Yeonsu-gu, Incheon 22012, Republic of Korea.
Convergence Research Center for Insect Vectors (CRCIV), Incheon National University, 119 Academy-ro, Yeonsu-gu, Incheon 22012, Republic of Korea.
Int J Mol Sci. 2024 Apr 12;25(8):4271. doi: 10.3390/ijms25084271.
Honey bees are commonly used to study metabolic processes, yet the molecular mechanisms underlying nutrient transformation, particularly proteins and their effects on development, health, and diseases, still evoke varying opinions among researchers. To address this gap, we investigated the digestibility and transformation of water-soluble proteins from four artificial diets in long-lived honey bee populations (), alongside their impact on metabolism and DWV relative expression ratio, using transcriptomic and protein quantification methods. Diet 2, characterized by its high protein content and digestibility, was selected for further analysis from the other studied diets. Subsequently, machine learning was employed to identify six diet-related molecular markers: , , , , , and The expression levels of these markers were found to resemble those of honey bees who were fed with Diet 2 and bee bread, renowned as the best natural food. Notably, honey bees exhibiting chalkbrood symptoms (Control-N) responded differently to the diet, underscoring the unique nutritional effects on health-deficient bees. Additionally, we proposed a molecular model to elucidate the transition of long-lived honey bees from diapause to development, induced by nutrition. These findings carry implications for nutritional research and beekeeping, underscoring the vital role of honey bees in agriculture.
蜜蜂常用于研究代谢过程,然而,营养物质转化背后的分子机制,尤其是蛋白质及其对发育、健康和疾病的影响,在研究人员中仍存在不同观点。为了填补这一空白,我们使用转录组学和蛋白质定量方法,研究了四种人工饲料中水溶性蛋白质在长寿蜜蜂群体中的消化率和转化率,以及它们对新陈代谢和DWV相对表达率的影响。从其他研究的饲料中选择了蛋白质含量高且消化率高的饲料2进行进一步分析。随后,利用机器学习确定了六个与饲料相关的分子标记: 、 、 、 、 和 。发现这些标记的表达水平与喂食饲料2和被誉为最佳天然食物的蜂粮的蜜蜂相似。值得注意的是,表现出白垩病症状的蜜蜂(对照-N)对饲料的反应不同,这突出了对健康状况不佳的蜜蜂独特的营养作用。此外,我们提出了一个分子模型来阐明营养诱导长寿蜜蜂从滞育到发育的转变。这些发现对营养研究和养蜂业具有启示意义,强调了蜜蜂在农业中的重要作用。