Differential response of alpine steppe and alpine meadow to climate warming in the central Qinghai–Tibetan Plateau

草原 福布 环境科学 植物群落 高山植物 高原(数学) 全球变暖 生态系统 生态学 生产力 气候变化 初级生产 生物 物种丰富度 草原 数学分析 宏观经济学 经济 数学
作者
Hasbagan Ganjurjav,Qingzhu Gao,Elise S. Gornish,Mark W. Schwartz,Liang Yan,Xujuan Cao,Weina Zhang,Yong Zhang,Wenhan Li,Yunfan Wan,Yue Li,Luobu Danjiu,Hongbao Guo,Erda Lin
出处
期刊:Agricultural and Forest Meteorology [Elsevier BV]
卷期号:223: 233-240 被引量:236
标识
DOI:10.1016/j.agrformet.2016.03.017
摘要

Recently, the Qinghai–Tibetan Plateau has experienced significant warming. Climate warming is expected to have profound effects on plant community productivity and composition, which can drive ecosystem structure and function. To explore effects of warming on plant community productivity and composition, we conducted a warming experiment using open top chambers (OTCs) from 2012 to 2014 in alpine meadow and alpine steppe habitat on the central Qinghai–Tibetan Plateau. We measured aboveground net primary productivity (ANPP), community composition and species diversity under ambient and two levels of artificially warmed conditions across three years. Our results showed that warming significantly stimulated plant growth in the alpine meadow, but reduced growth on the alpine steppe. The increase of ANPP in alpine meadow was a result of an increase of plant height under warming. Warming-induced drought conditions were primarily responsible for the observed decrease of ANPP in an alpine steppe. Plant community composition and species diversity were not influenced by warming in alpine meadow. Alternatively, in alpine steppe, cover of graminoids and forbs significantly declined while legumes substantially increased under warming, subsequently resulting in rapid species losses. Changes in soil moisture were responsible for observed changes in graminoids and legumes in the alpine steppe. Overall, experimental results demonstrated that warming had a positive impact on plant community structure and function in alpine meadow and had a negative impact on these characteristics in an alpine steppe. This work highlights the important role of soil moisture for regulating plant productivity and community composition response to warming in the alpine steppe. In particular, the deep-rooted, drought resistant plants may increase in a warmer future in the central Qinghai–Tibetan Plateau. These changes may reduce habitat quality for the local community of grazers because many of the species that increased are also unpalatable to grazers.
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