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生态学杂志 ›› 2026, Vol. 45 ›› Issue (6): 1933-1942.doi: 10.13292/j.1000-4890.202606.028

• 研究报告 • 上一篇    下一篇

中国北方地区草地生物量分配格局及其调控因素

吴柳翠,胡中民,张卫荣,程思源,杨梅花,王孟谍,王舒欣,钱龙,靳川*   

  1. 1海南大学生态学院, 海口 570228; 2海南省农林环境过程与生态调控重点实验室(海南大学), 海口 570228; 3海南热带雨林国家生态质量综合监测站, 海南省保亭黎族苗族自治县 572316)
  • 出版日期:2026-06-10 发布日期:2026-12-01

Biomass allocation pattern and its regulatory factors of grasslands in northern China.

WU Liucui, HU Zhongmin, ZHANG Weirong, CHENG Siyuan, YANG Meihua, WANG Mengdie, WANG Shuxin, QIAN Long, JIN Chuan*   

  1. (1College of Ecology, Hainan University, Haikou 570228, China; 2Key Laboratory of Agro-Forestry Environmental Processes and Ecological Regulation of Hainan Province, Hainan University, Haikou 570228, China; 3Hainan Tropical Rainforest Ecology and Environment Research Station, Baoting 572316, Hainan, China).

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

摘要: 我国北方地区草地生物量的分配格局及其调控因子还不清楚。本研究通过整合已发表论文相关数据,建立了中国北方地区草地地上生物量、地下生物量、根冠比和物种组成等植被因素,放牧和氮添加等人为因素以及气候和土壤等环境因素的数据集,共包含951条独立数据。采用统计分析和机器学习(XGBoost)等方法对该数据集进行系统分析。结果显示,中国北方地区草地地上生物量均值为191.35±6.97 g·m-2,地下生物量均值为1461.55±39.11 g·m-2,根冠比均值为18.09±0.62。随着经度和纬度的增加,根冠比呈现先增加后降低的趋势。轻度放牧有助于提高生物量,而中度和重度放牧则导致生物量降低。氮肥施用导致地上生物量显著增加,而地下生物量则显著降低。物种组成对生物量分配发挥了关键作用,以禾本科植物为主的草地具有较高的地上生物量和较低的地下生物量和根冠比,以菊科和豆科等为优势物种的草地则展现出较高根冠比。环境因子对生物量呈非线性调控,如地下生物量随年均降水量增加先降低后上升,而根冠比随年均温升高先下降后增加。本研究为草地生态系统的可持续管理提供了科学依据,强调了放牧管理和氮肥使用策略的重要性。


关键词: 草地生物量, 放牧强度, 氮添加, 物种组成

Abstract: The allocation patterns of grassland biomass and their regulatory factors in northern China remain poorly understood. We compiled a dataset from literature, integrating 951 independent records on vegetation variables (including aboveground biomass, belowground biomass, root-to-shoot ratio, and species composition), anthropogenic factors (grazing and nitrogen addition), as well as climatic and soil variables. We systematically analyzed the dataset with statistical analysis and machine learning (XGBoost) approaches. The results showed that mean aboveground biomass in northern China grasslands was 191.35±6.97 g·m-2, belowground biomass was 1461.55±39.11 g·m-2, and the root-to-shoot ratio was 18.09±0.62. The root-to-shoot ratio exhibited a unimodal pattern with increasing longitude and latitude. Light grazing enhanced biomass, whereas moderate and heavy grazing reduced it. Nitrogen application significantly increased aboveground biomass but decreased belowground biomass. Species composition played a critical role in driving biomass allocation. Grasslands dominated by Poaceae species had higher aboveground biomass but lower belowground biomass and root-to-shoot ratio, whereas those dominated by Asteraceae and Fabaceae species showed higher root-to-shoot ratios. Environmental factors nonlinearly regulated biomass allocation. For instance, belowground biomass first decreased and then increased with increasing mean annual precipitation, while the root-to-shoot ratio initially declined and then rose with increasing mean annual temperature. Our results provide a scientific basis for the sustainable management of grasslands, highlighting the importance of grazing management and nitrogen fertilizer application strategies.


Key words: grassland biomass, grazing intensity, nitrogen addition, species composition