草原
温带气候
植物群落
生态学
生物
植被(病理学)
生态系统
温带森林
排序
限制
植物生态学
温带雨林
群落结构
高度(三角形)
社区
非生物成分
空间生态学
植被类型
农学
丰度(生态学)
河岸带
一年生植物
环境梯度
陆地生态系统
植被分类
空间分布
梯度分析
抗性(生态学)
植物覆盖
作者
Ping Wang,Shuai Shang,Zhengyang Rong,Jingkuan Sun,Jinzhao Ma,Zhaohua Lu,Fei Wang,Zhanyong Fu
出处
期刊:Biology
[Multidisciplinary Digital Publishing Institute]
日期:2025-10-02
卷期号:14 (10): 1350-1350
被引量:1
标识
DOI:10.3390/biology14101350
摘要
The composition, architecture, and plant traits of temperate steppe communities are intricately associated with environmental factors. However, most studies primarily focus on aboveground observations, often overlooking the critical role of belowground root systems. Here we conducted a field survey at a large-regional scale to investigate the composition of temperate steppe communities and plant root traits. Cluster analysis, correspondence analysis and Pearson correlation coefficient matrix method were employed to classify vegetation associations based on plant community composition and root traits. The principal driving and limiting factors shaping plant root communities were systematically investigated. The results showed that the temperate steppe was categorized into three community subtypes: meadow steppe, typical steppe, and desert steppe, comprising five plant groups and thirteen plant associations. The RLFS analysis, based on belowground architectural and functional traits, demonstrated a spatial gradient differentiation with three ecological adaptations: tufted herbs, rhizome herbs, and non-tufted or rhizome herbs. Key environmental driving factors for meadow steppe included precipitation, soil carbon, nitrogen, and phosphorus content, while the average growing-season temperature as a limiting factor. The environmental driving factors for the typical steppe were not apparent, and the limiting factor was water. For the desert steppe, the environmental driving factors were altitude and average growing-season temperature. These findings reveal notable spatial heterogeneity and a distinct distribution pattern in community composition and vegetation classification based on belowground root traits in the Inner Mongolia steppes.
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