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生态学杂志 ›› 2026, Vol. 45 ›› Issue (6): 1828-1837.doi: 10.13292/j.1000-4890.202606.017

• 研究报告 • 上一篇    下一篇

有机肥施用对云南四种人工建植草地生物量和土壤理化性质的影响

李若谷,塔巴次仁,李学强,张霖杰,吴建平*   

  1. (云南大学植被结构功能与建造全国重点实验室, 云南省生物适应与保护利用重点实验室, 生态与环境学院, 昆明 650500)

  • 出版日期:2026-06-10 发布日期:2026-12-01

Effects of organic fertilizer application on biomass and soil physicochemical properties in four cultivated grasslands of Yunnan.

LI Ruogu, TABA Ciren, LI Xueqiang, ZHANG Linjie, WU Jianping*   

  1. (Yunnan Key Laboratory of Biological Adaptation, Conservation and Utilization, State Key Laboratory of Vegetation Structure, Function and Construction (VegLab), School of Ecology and Environmental Science, Yunnan University, Kunming 650500, China).

  • Online:2026-06-10 Published:2026-12-01

摘要: 人工建植草地是我国畜牧业可持续发展的关键。目前,在人工草地管理中,施用有机肥是实现高产与地力可持续的重要措施。本研究以云南4种人工建植草地(白三叶(Trifolium repens)、菊苣(Cichorium intybus)、鸭茅(Dactylis glomerata)、车前(Plantago asiatica))为对象,设置对照和单施有机肥(18000 kg·hm-2)处理,通过测定4种人工建植草地生物量和土壤理化性质,如土壤有机碳、含水量、pH值、全氮、全磷、速效磷等指标,以探究有机肥施用对4种人工建植草地的影响。结果表明,施用有机肥使4种人工草地地上生物量增加11.0%~38.8%。同时,有机肥施用能提高4种人工建植草地土壤有机碳并改善土壤含水量。鸭茅、白三叶、菊苣和车前土壤有机碳含量增幅分别为40.3%、25.7%、17.5%和11.1%;含水量分别增加11.1%、8.4%、8.1%和3.7%。但其他理化因子如铵态氮、硝态氮、全磷和速效磷含量受植物种类的影响,响应变异比较大。此外,相关分析和结构方程模型表明,4种人工草地生长的主要驱动因子不同,白三叶和鸭茅受全磷和土壤有机碳影响,菊苣和车前则受土壤有机碳和含水量影响。综上,有机肥施用能通过影响土壤养分进而提高草地生物量,但对不同草地的作用机理存在差异,研究结果可为南方相关人工草地的可持续利用与高质量建植提供科学依据。


关键词: 人工草地, 有机肥施用, 生物量, 土壤性质, 驱动因子

Abstract: Artificial grasslands are crucial for the sustainable and high-quality development of animal husbandry in China. The application of organic fertilizer in artificial grasslands is an indispensable management to achieve high yield and sustainable soil fertility. We examined the application of organic fertilizer (18000 kg·hm-2) on artificial grasslands with each of four species, Trifolium repens, Cichorium intybus, Dactylis glomerata, and Plantago asiatica. We assessed the changes in biomass of the four artificial grasslands and soil physicochemical properties including soil organic carbon, moisture content, pH, total nitrogen, total phosphorus, and available phosphorus. The results showed that organic fertilizer application increased aboveground biomass by 11.0%-38.8% in the four artificial grasslands. Meanwhile, organic fertilizer application improved soil organic carbon content and soil water content. Specifically, soil organic carbon contents of Dactylis glomerata, Trifolium repens, Cichorium intybus, and Plantago asiatica were significantly increased by 40.3%, 25.7%, 17.5%, and 11.1%, respectively. Soil water contents were significantly increased by 11.1%, 8.4%, 8.1%, and 3.7%, respectively. However, other physicochemical factors such as ammonium, nitrate, total phosphorus, and available phosphorus content exhibited greater variability across grasslands with different plant species. Furthermore, correlation analysis and structural equation modeling revealed that the primary growth drivers differed among the four artificial grasslands. Trifolium repens and Dactylis glomerata were mainly influenced by total phosphorus and soil organic carbon contents, while Cichorium intybus and Plantago asiatica were primarily affected by soil organic carbon and water contents. In conclusion, organic fertilizer application enhanced grassland biomass by affecting soil nutrients, but the underlying mechanisms differed across grass species. These findings provide a scientific basis for the sustainable utilization and high-quality establishment of artificial grasslands in southern China.


Key words: artificial grassland, organic fertilizer application, biomass, soil property, driving factor