生态系统
交替稳态
生态学
沼泽
正面反馈
高原(数学)
环境科学
栖息地
植物群落
高山植物
生态演替
湿地
生物
数学
电气工程
工程类
数学分析
作者
Guorui Hu,Haonan Bai,Yunpeng Zhao,Ning Chen,Honglin Li,He Mao,Zengpeng Guo,Xiongjie Sheng,Hui Zhang,Hang An,Panhong Zhang,Zhengkuan Zhang,Ye Sun,Miaojun Ma
摘要
ABSTRACT A self‐reinforcing positive feedback is regarded as a critical process for maintaining alternative stable states (ASS); however, identification of ASS and quantification of positive feedbacks remain elusive in natural ecosystems. Here, we used large‐scale field surveys to search for ASS and a positive feedback mechanism under a wide range of habitats on the Tibetan Plateau. Using multiple methods, we proved that three stable states exist that accompany alpine marsh degradation. Positive feedbacks between changing soil moisture and plant community composition forced the ecosystem into another stable state, and the alteration of water use efficiency (WUE) of the component species contributed to this shift. This study provides the first empirical evidence that positive feedback loops maintain ASS in the alpine marsh ecosystem on the Tibetan Plateau. Our research revealed the powerful driving role of plants in transitions between states, which may support the conservation and restoration of global alpine marsh ecosystems.
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