Responses of biotic interactions of dominant and subordinate species to decadal warming and simulated rotational grazing in Tibetan alpine meadow

被引:0
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作者
Xin’e Li
Xiaoxue Zhu
Shiping Wang
Shujuan Cui
Caiyun Luo
Zhenhua Zhang
Lirong Zhang
Lili Jiang
Wangwang Lü
机构
[1] Chinese Academy of Sciences,Key Laboratory of Alpine Ecology and Biodiversity, Institute of Tibetan Plateau Research
[2] Chinese Academy of Sciences,Key Laboratory of Adaptation and Evolution of Plateau Biota, Northwest Institute of Plateau Biology
[3] CAS Center for Excellence in Tibetan Plateau Earth Science of the Chinese Academy of Sciences,Naqu Integrated Observation and Research Station of Ecology and Environment
[4] University of Chinese Academy of Sciences,undefined
[5] Tibet University and ITP of CAS,undefined
来源
关键词
climate warming; biotic interactions; dominant and subordinate species; spatial pattern; species coexistence;
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学科分类号
摘要
Warming increases competition among plant species in alpine communities by ameliorating harsh environmental conditions, such as low temperatures. Grazing, as the main human activity, may mitigate the effect of warming, as previously reported. However, it is critical to refine the effects of warming on biotic interactions among species, for example, by taking the competitive ability of species into consideration. Based on a 10-year warming and grazing experiment in a Tibetan alpine meadow, we evaluated interspecific biotic interactions of dominant and subordinate species, using the approach of interspecific spatial associations. Warming significantly increased competition between subordinate and dominant species as well as among subordinate species, but not among dominant species. Moreover, facilitation of dominant-subordinate species also increased under warming. Simulated rotational grazing had similar effects to warming, with increasing interspecific competition. Our results show that, when studying the effects of warming on biotic interactions among species, it is necessary to characterize different species pairs relative to their competitive ability, and that simulated rotational grazing does not mitigate the effects of warming in the long term. Our results also provide evidence that the spatial pattern of species is a critical mechanism in species coexistence.
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页码:849 / 859
页数:10
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