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1 February 2015 Response of Kobresia pygmaea and Stipa purpurea Grassland Communities in Northern Tibet to Nitrogen and Phosphate Addition
Jingsheng Wang, Zhikai Wang, Xianzhou Zhang, Yangjian Zhang, Congqian Ran, Junlong Zhang, Baoxiong Chen, Bingsong Zhang
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Abstract

The Tibetan Plateau is of fundamental ecological significance to China, Asia, and the world. In recent years, Tibetan grasslands have suffered from severe degradation due to climate change and anthropogenic disturbance. In this study, nitrogen (N) and phosphate were applied to a moderately degraded Kobresia pygmaea meadow and Stipa purpurea steppe in the arid alpine northern Tibetan Plateau. The results showed that with increasing nitrogenous fertilizer, the height, coverage, biomass, and importance value of the K. pygmaea population decreased whereas the population of S. purpurea exhibited the opposite trend. Application of a mixed fertilizer with the same amount of N and phosphorus (P) (5 g each per m2) doubled the biomass of the K. pygmaea meadow and increased the aboveground biomass of the S. purpurea steppe by 72.3%. The nitrogenous fertilizer increased the total biomass and belowground biomass of the S. purpurea steppe, whereas the mixed fertilizer was beneficial to aboveground grass recovery. Application of 10 g N 5 g P m−2 fertilizer increased aboveground biomass by 164.8%, whereas the belowground biomass was less than the control by 4.7%. The N and P fertilizer did not affect soil pH, except for some changes in soil N and P contents.

International Mountain Society
Jingsheng Wang, Zhikai Wang, Xianzhou Zhang, Yangjian Zhang, Congqian Ran, Junlong Zhang, Baoxiong Chen, and Bingsong Zhang "Response of Kobresia pygmaea and Stipa purpurea Grassland Communities in Northern Tibet to Nitrogen and Phosphate Addition," Mountain Research and Development 35(1), 78-86, (1 February 2015). https://doi.org/10.1659/MRD-JOURNAL-D-11-00104.1
Accepted: 1 October 2014; Published: 1 February 2015
KEYWORDS
alpine grassland
fertilization
nitrogen and phosphorus addition
soil productivity
Tibetan plateau
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