昆虫学报 ›› 2025, Vol. 68 ›› Issue (8): 1150-1163.doi: 10.16380/j.kcxb.2025.08.013

• 研究论文 • 上一篇    下一篇

基于蜂粮混合花粉的重庆四面山中华蜜蜂粉源植物多样性及其时空动态分析

龙金桂1,#, 张可1,#, 邓飞3, 王亚美1, 石庆会2,*, 黄敦元1,*   

  1. (1. 农业农村部长江上游传粉昆虫资源保护与利用重点实验室, 重庆 401331; 2. 三明学院, 福建省资源环境监测与可持续经营利用重点实验室, 三明 365004; 3. 重庆市江津区四面山森林资源服务中心, 重庆 402260)
  • 出版日期:2025-08-20 发布日期:2025-09-30

Analysis of the diversity and temporal-spatial dynamics of pollen-source plants of Apis cerana cerana (Hymenoptera: Apidae) in Simian Mountain, Chongqing, southwestern China, based on mixed pollens in bee bread7

LONG Jin-Gui1, #, ZHANG Ke1, #, DENG Fei3, WANG Ya-Mei1, SHI Qing-Hui2,*, HUANG Dun-Yuan1,*   

  1. (1. Key Laboratory of Conservation and Utilization of Pollinator Insect of the Upper Reaches of the Yangtze River, Ministry of Agriculture and Rural Affairs, Chongqing 401331, China; 2. Fujian Provincial Key Laboratory of Resources and Environment Monitoring & Sustainable Management and Utilization, Sanming University, Sanming 365004, China; 3. Simian Mountain Forest Resource Service Center, Jiangjin District, Chongqing 402260, China)
  • Online:2025-08-20 Published:2025-09-30

摘要: 【目的】本研究旨在探究海拔和季节变化对重庆四面山中华蜜蜂Apis cerana cerana粉源植物组成及多样性的影响。【方法】野外采集重庆四面山不同海拔梯度(500, 700, 900, 1 100和1 300 m)及不同月份(3, 5, 7, 9和11月)中华蜜蜂蜂箱中新鲜巢脾的蜂粮,提取蜂粮粉源植物DNA进行ITS2区PCR扩增,利用Illumina PE250二代高通量测序技术进行测序,利用生物信息学方法分析中华蜜蜂的粉源植物组成、丰度和多样性。【结果】共注释到重庆四面山中华蜜蜂粉源植物30目61科128属162种,其中木本植物101种(占比62.35%)、草本植物51种(占比31.48%)和藤本植物10种(占比6.17%)。在目水平,蔷薇目(Rosales)植物种类最多(21种),其次是壳斗目(Fagales)和菊目(Asterales),分别有19和15种。基于可操作分类单元(operational taxonomic units, OTUs)的中华蜜蜂粉源植物组成分析发现:总占比超过1%的粉源植物有17种,排名前5的依次是茅栗Castanea seguinii、细齿叶柃Eurya nitida、盐麸木Rhus chinensis、甘蓝Brassica oleracea和黄毛楤木Aralia chinensis,占比分别是18.9%, 11.3%, 8.5%, 6.3%和5.3%。中华蜜蜂粉源植物alpha多样性分析结果显示:重庆四面山中华蜜蜂粉源植物多样性随海拔增加呈现先增加后减少的趋势; 5月份中华蜜蜂粉源植物多样性最低,而其他月份间粉源植物多样性无显著差异。【结论】重庆四面山中华蜜蜂粉源植物资源丰富,粉源植物多样性随月份变化不明显,而随海拔呈现先增加后减少的趋势。本研究揭示了重庆四面山中华蜜蜂粉源植物组成及多样性的时空变化特征,为进一步研究和保护该地区中华蜜蜂种群提供了新视角,也为当地养蜂人选择合适的蜂场位置、保证花粉资源稳定供应、提高蜜蜂成活率和增加蜂产品产量提供了新思路。

关键词: 中华蜜蜂, 粉源植物, 花粉, 时空变化, 高通量测序, 四面山

Abstract: 【Aim】 This study aims to explore the effects of altitude and seasonal changes on the composition and diversity of pollen-source plants of Apis cerana cerana. 【Methods】 Pollen-source plant DNA was extracted for PCR amplification targeting the ITS2 region by collecting the bee bread of A. c. cerana at various altitude gradients (500, 700, 900, 1 100 and 1 300 m) across different months (March, May, July, September and November) in Simian Mountain, Chongqing, southwestern China. Sequencing was performed using Illumina PE250 second-generation high-throughput sequencing technology. Bioinformatics methods were employed to analyze the composition, abundance and diversity of pollen-source plants of A. c. cerana. 【Results】 A total of 162 species belonging to 128 genera of 61 families across 30 orders were identified among the pollen-source plants of A. c. cerana in Simian Mountain, Chongqing, including 101 species of woody plants (accounting for 62.35%), 51 species of herbaceous plants (accounting for 31.48%) and 10 species of lianas (accounting for 6.17%). Among these pollen-source plants, the order Rosales exhibited the highest number of plant species (21), followed by Fagales and Astererales, which comprised 19 and 15 species, respectively. Analysis of the composition of pollen-source plants of A. c. cerana based on the operational taxonomic units (OTUs) indicated that there were 17 species of pollen-source plants accounting for over 1%, with the top five being Castanea seguinii (accounting for 18.9%), Eurya nitida (accounting for 11.3%), Rhus chinensis(accounting for 8.5%), Brassica oleracea (accounting for 6.3%) and Aralia chinensis (accounting for 5.3%). The results of alpha-diversity analysis showed that the diversity of pollen-source plants of A. c. cerana in Simian Mountain, Chongqing increased first and then decreased with the increase of altitude, and was the lowest in May and had no significant difference between the other months. 【Conclusion】 The pollen-source plant resources of A. c. cerana in the Simian Mountain region of Chongqing are abundant. The diversity of these pollen-source plants does not significantly vary by month, however, it exhibits a trend of initially increasing and then decreasing with altitudes. This study elucidates the characteristics of spatiotemporal variations in plant composition and diversity of pollen-source plants of A. c. cerana in Simian Mountain of Chongqing. The findings offer a novel perspective for further research and conservation efforts concerning A. c. cerana populations in this area, and provide valuable insights for local beekeepers in selecting appropriate apiary locations, ensuring a steady supply of pollen resources, enhancing honeybee survival rates, and ultimately increasing the yield of bee products.

Key words: Apis cerana cerana, pollen-source plants, pollen, spatiotemporal variation, highthroughput sequencing, Simian Mountain