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生态学杂志 ›› 2026, Vol. 45 ›› Issue (3): 794-802.doi: 10.13292/j.1000-4890.202603.042

• 研究报告 • 上一篇    下一篇

不同生草模式对葡萄园土壤养分、微生物群落结构及功能类群的影响

操敏1,范瑾1,李明1,2,3,4*   

  1. 1宁夏大学葡萄酒与园艺学院, 银川 750021; 2宁夏葡萄与葡萄酒研究院, 银川 750021; 3教育部葡萄与葡萄酒工程研究中心, 银川 750021; 4宁夏回族自治区黄河水联网数字治水重点实验室, 银川 750021)
  • 出版日期:2026-03-10 发布日期:2026-09-01

Effects of different cover cropping patterns on soil nutrients, microbial community structure and functional taxa in vineyards.

CAO Min1, FAN Jin1, LI Ming1,2,3,4*   

  1. (1College of Wine and Horticulture, Ningxia University, Yinchuan 750021, China; 2Ningxia Grape and Wine Research Institute, Yinchuan 750021, China; 3Engineering Research Center of Grape and Wine, Ministry of Education, Yinchuan 750021, China; 4Key Laboratory of Digital Water Control of Yellow River Water Network, Ningxia Hui Autonomous Region, Yinchuan 750021, China).

  • Online:2026-03-10 Published:2026-09-01

摘要: 为评估生草对贺兰山东麓酿酒葡萄园土壤物理化学性状与微生物群落结构及功能的影响,本研究以‘霞多丽’葡萄为试验材料,在葡萄园行间设置清耕、自然生草、种植毛叶苕子3种生草模式,并通过高通量测序技术分析土壤微生物群落特征。结果表明:与清耕相比,生草处理土壤有机质、全氮、碱解氮和全磷含量均显著提升,其中毛叶苕子处理的效果最好,分别为8.76 g·kg-1、1.16 g·kg-1、26.13 mg·kg-1、0.58 g·kg-1。生草处理增加了土壤过氧化氢酶、纤维素酶、淀粉酶活性。生草处理土壤细菌群落Shannon指数、Chao1指数均显著提升,真菌群落无显著差异。群落组成结果显示,变形菌门(25.78%~30.46%)、放线菌门(14.12%~16.15%)、拟杆菌门(9.37%~15.91%)为优势细菌门;子囊菌门(68.77%~88.20%)为优势真菌门。组间群落差异分析(LEfSe)表明,3组土壤样品共得到65个具有显著差异细菌菌群,38个具有显著差异的真菌菌群。Tax4Fun功能预测共获得6个一级功能层,表现出细菌功能上的丰富性,土壤细菌群落在代谢、遗传信息处理和环境信息处理方面功能活跃。FunGuild分析表明,种植毛叶苕子明显有利于土壤腐生营养型、病理-腐生过渡型和病理-腐生-共生过渡型真菌的繁殖。总体而言,生草有助于提高葡萄园土壤养分与酶活性,并且优化微生物群落结构与功能,有利于葡萄园土壤生态环境的改善。


关键词: 贺兰山东麓, 葡萄园, 生草, 土壤微生物, 功能预测

Abstract: We assessed the effects of cover crops on soil physicochemical properties and microbial community structure composition and function in winemaking vineyards (‘Chardonnay’ grapes) in the eastern foothills of Helan Mountains. There were three cover cropping modes, namely, clear tillage, natural grassing, and planting Vicia villosa. Soil microbial community characteristics were analyzed by high-throughput sequencing technology. The results showed that compared with clear tillage, soil organic matter, total nitrogen, available nitrogen and total phosphorous contents were significantly increased in the grassing treatments. The best effect was found in Vicia villosa treatment, with the contents of soil organic matter, total nitrogen, available nitrogen and total phosphorous being 8.76 g·kg-1, 1.16 g·kg-1, 26.13 mg·kg-1 and 0.58 g·kg-1, respectively. The grassing treatments increased the   activities of soil peroxidase, cellulase, and amylase. In contrast to clean tillage, the grassing treatments significantly increased the Shannon and Chao1 indices of soil bacterial community, whereas no significant differences were observed for the fungal community. The results of microbial community composition analysis showed that Proteobacteria (25.78%-30.46%), Actinobacteriota (14.12%-16.15%), and Bacteroidota (9.37%-15.91%) were the dominant bacterial phyla, and Ascomycota (68.77%-88.20%) was the dominant fungal phylum. Intergroup community difference analysis (LEfSe) showed that the three groups of soil samples obtained a total of 65 significantly different bacterial taxa and 38 significantly different fungal taxa. Tax4Fun functional prediction obtained a total of six first-level functional layers, which showed the high functional richness of bacteria, and the soil bacterial community was functionally active in metabolism, genetic information processing, and environmental information processing. FunGuild analysis showed that planting Vicia villosa facilitated the colonization of soil saprotroph, pathotroph-saprotroph and pathotroph-saprotroph-symbiotroph fungi. In conclusion, cover crops enhance soil fertility and enzyme activities, and optimize the structure and function of microbial communities, which is conducive to the improvement of soil ecological environment in vineyards.


Key words: eastern foothills of Helan Mountain, vineyard, cover cropping, soil microorganisms, functional prediction