昆虫学报 ›› 2025, Vol. 68 ›› Issue (12): 1649-1661.doi: 10.16380/j.kcxb.2025.12.003

• 研究论文 • 上一篇    下一篇

人工饲粮对意大利蜜蜂雄蜂发育及血淋巴蛋白质组的影响

杨一颖1,#, 董宣呈2,#, 房宇1,*   

  1. (1. 中国农业科学院蜜蜂研究所, 资源昆虫高效养殖与利用全国重点实验室, 北京 100193; 2. 北京农学院生物与资源环境学院, 北京 102206)
  • 出版日期:2025-12-20 发布日期:2026-01-29

Effects of artificial diets on the development and hemolymph proteome of drones of the Italian honey bee, Apis mellifera ligustica (Hymenoptera: Apidae)

YANG Yi-Ying1,#, DONG Xuan-Cheng2,#, FANG Yu1,*   

  1.  (1. State Key Laboratory of Resource Insects, Institute of Apicultural Research, Chinese Academy of Agricultural Sciences, Beijing 100193, China; 2. College of Bioscience and Resources Environment, Beijing University of Agriculture, Beijing 102206, China)
  • Online:2025-12-20 Published:2026-01-29

摘要: 【目的】现有蜜蜂离群人工饲粮是依据西方蜜蜂Apis mellifera工蜂营养需求设计的,能否满足雄蜂离群繁育需求尚无结论。本研究通过人工饲粮培养意大利蜜蜂A. m. ligustica雄蜂的体重监测及血淋巴蛋白质组评估人工饲粮对雄蜂发育的影响,为雄蜂离群人工饲粮饲养研究提供理论依据。【方法】将意大利蜜蜂雄蜂进行离群人工饲粮饲养(处理组)和自然条件饲养(对照组),测定幼虫期、蛹期和出房蜂时期的体重,收集血淋巴蛋白质并利用液相色谱-串联质谱(liquid chromatography-tandem mass spectrometer, LC-MS/MS)进行鉴定,借助于生物信息学手段如GO富集分析和KEGG富集分析深入分析两种培养模式下血淋巴蛋白质的功能分类及生物学通路的差异。【结果】各发育阶段处理组意大利蜜蜂雄蜂体重均显著低于对照组;蛋白质组定性分析表明,处理组雄蜂血淋巴共表达蛋白质1 097个,对照组雄蜂血淋巴共表达蛋白质1 074个。血淋巴蛋白质组定量分析显示,与对照组比较,处理组幼虫期有78个蛋白质下调表达, 10个蛋白质上调表达,血淋巴蛋白质的表达量提高激活了Toll与Imd信号通路,依赖复杂糖类的降解获取能量,并延迟激活了溶酶体功能;处理组蛹期有122个蛋白质下调表达, 15个蛋白质下调表达,说明人工饲粮饲养通过激活Hippo信号通路,从而降低发育速度以应对营养的匮乏;处理组出房蜂时期有37个蛋白质上调表达,168个下调蛋白质,说明人工饲粮饲养通过激活核糖体通路,合成大量蛋白质。【结论】本研究测试的蜜蜂离群人工饲粮并不能满足意大利蜜蜂雄蜂发育的营养需求,为了建立科学有效的雄蜂饲养方法,需进一步调查雄蜂发育的营养需求,优化人工饲粮的营养组成。

关键词: 意大利蜜蜂; 雄蜂; 人工饲粮; 血淋巴; 蛋白质组学, 离群繁育

Abstract: 【Aim】Existing in vitro artificial diets for honey bees are formulated based on the nutritional requirements of Apis mellifera worker bees; however, their suitability for drone in vitro development remains unclear. This study focused on the effects of artificial diets on the development of A. m. ligustica drones through the investigation of body weight and hemolymph proteome to provide a theoretical basis for studies on drone in vitro artificial diet rearing. 【Methods】 The A. m. ligustica drones were reared under in vitro rearing condition (treatment group) and natural condition (control group), then the body weight at the larval, pupal and newly emerged adult stages was measured, and the corresponding hemolymph proteins were collected and identified by liquid chromatography-tandem mass spectrometer (LC-MS/MS) and analyzed by bioinformatics approaches, such as GO and KEGG enrichment analyses, to reveal the differences in the functional classification and biological pathways of hemolymph proteins between the two rearing methods. 【Results】 The body weight of A. m. ligustica drones at various developmental stages in the treatment group was significantly lower than that in the control group. Qualitative analysis of the hemolymph proteome indicated that the treatment group had a total of 1 097 expressed proteins, while the control group had 1 074 expressed proteins. Furthermore, quantitative analysis of the hemolymph proteome revealed that the expression of 78 proteins was down-regulated and that of 10 proteins was up-regulated during the larval stage of A. m. ligustica in the treatment group as compared to that in the control group. The elevated expression of hemdymph proteins activated the Toll and Imd signaling pathways, harvested energy through the degradation of complex sugars and made lysosomal functions to be delayed in launching. Compared to the control group, treatment group had 122 down-regulated and 15 up-regulated proteins during the pupal stage, indicating that artificial diet rearing activates the Hippo signaling pathway to reduce the developmental rate to cope with the undernutrition. Compared to the control group, the treatment group had 37 up-regulated and 168 down-regulated proteins during the newly emerged adult stage, indicating that artificial diet rearing synthesizes a large number of proteins through triggering the ribosome pathway. 【Conclusion】 The findings demonstrate that in vitro reared drones are undernourished in the supporting of artificial diets. To establish a scientific and efficient drone-rearing approach, it is imperative to conduct further investigation on the nutritional requirements of drone development, and optimize the nutritional composition of artificial diets.

Key words: Apis mellifera ligustica, drone, artificial diet, hemolymph, proteomics; in vitro rearing