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DOI10.1007/s11368-019-02255-0
Differential response to warming of the uptake of nitrogen by plant species in non-degraded and degraded alpine grasslands
Pang, Zhe; Jiang, Lili; Wang, Shiping; Xu, Xingliang; Rui, Yichao; Zhang, Zhenhua; Luo, Caiyun; Wang, Yanfen
通讯作者Wang, YF (通讯作者)
发表日期2019
ISSN1439-0108
EISSN1614-7480
起始页码2212
结束页码2221
卷号19期号:5
英文摘要Purpose Chemical niche differentiation and changes in the dominance of plant species have been proposed as mechanisms for the coexistence of different types of plants. We explored how dominant plant species take up ammonium (NH4+), nitrate (NO3-), and glycine under conditions of warming and soil degradation in alpine grasslands. Materials and methods Open-top chambers were used to simulate warming in degraded and non-degraded plots in an alpine grassland ecosystem on the Tibetan Plateau. Plant species were selected in both non-degraded (Kobresia pygmaea and Aster tataricus) and degraded (Aster tataricus and Chenopodium glaucum) plots. Short-term N-15-labeling experiments with NH4+-N, NO3--N, and glycine ((CN)-C-13-N-15-glycine) were conducted in each of four subplots with water alone as the control. Results and discussion All of the selected plant species took up both organic and inorganic forms of N in the K. pygmaea grassland. Warming increased the uptake of glycine-N by the dominant species, whereas the uptake of NH4+-N by the non-dominant species increased in both non-degraded and degraded grasslands. Warming changed the N uptake preference of A. tataricus from NO3--N to NH4+-N in non-degraded grasslands, but did not change the preference of A. tataricus under degraded conditions. This suggests that degradation can affect the preference of different plant species for particular forms of N as a response to warming. Conclusions Plants in K. pygmaea grasslands take up organic N, although inorganic N is the dominant form of N used. The effects of warming on the uptake of N by plants varied with species, the form of N, and the degradation of the grassland. Degradation modified the effect of warming on the preference of plants for different forms of N. Different plant species developed different patterns for the uptake of N in both non-degraded and degraded plots, which may facilitate their coexistence in alpine grasslands.
关键词ORGANIC NITROGENN UPTAKEINORGANIC NITROGENACQUISITIONCOMPETITIONDEGRADATIONAMMONIUMGLYCINECARBONMICROORGANISMS
英文关键词Alpine grasslands; Degradation; Dominant species; Intact amino acids; Organic N; Tibetan Plateau; Warming
语种英语
WOS研究方向Environmental Sciences & Ecology ; Agriculture
WOS类目Environmental Sciences ; Soil Science
WOS记录号WOS:000464836300007
来源期刊JOURNAL OF SOILS AND SEDIMENTS
来源机构中国科学院青藏高原研究所
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/259539
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GB/T 7714
Pang, Zhe,Jiang, Lili,Wang, Shiping,et al. Differential response to warming of the uptake of nitrogen by plant species in non-degraded and degraded alpine grasslands[J]. 中国科学院青藏高原研究所,2019,19(5).
APA Pang, Zhe.,Jiang, Lili.,Wang, Shiping.,Xu, Xingliang.,Rui, Yichao.,...&Wang, Yanfen.(2019).Differential response to warming of the uptake of nitrogen by plant species in non-degraded and degraded alpine grasslands.JOURNAL OF SOILS AND SEDIMENTS,19(5).
MLA Pang, Zhe,et al."Differential response to warming of the uptake of nitrogen by plant species in non-degraded and degraded alpine grasslands".JOURNAL OF SOILS AND SEDIMENTS 19.5(2019).
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