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Leaf Carbon, Nitrogen and Phosphorus Stoichiometry of Phragmites Australis in Northeastern China

来源:

来源:   |  发布时间:2016-06-23   |  【 大  中  小 】

论文题目:

Leaf Carbon, Nitrogen and Phosphorus Stoichiometry of Phragmites Australis in Northeastern China

英文论文题目:

Leaf Carbon, Nitrogen and Phosphorus Stoichiometry of Phragmites Australis in Northeastern China

第一作者:

刘莹

英文第一作者:

Liu, Y.

联系作者:

姜明

英文联系作者:

Jiang, M.

发表年度:

2016

卷:

24

期:

12C

页码:

4711-4719

摘要:

The aim of this study was to document the patterns of leaf C, N, P and their ratios to identify how these patterns varied with environmental variables. We measured leaf C, N and P concentrations of Phragmites australis at 5 marsh sites across northeastern China, and explored the effects of altitude, climate, and soil on leaf C, N and P. Results showed that leaf C, N, P and N/P were negatively related to altitude, and positively, except leaf P, to mean annual temperature and precipitation, while leaf C/N and C/P ratios showed opposite trends. Furthermore, leaf P was positively related to soil P and negatively to soil pH. The pattern of leaf P was more stable than leaf C and N responding to changing environment and had stronger stoichiometric homeostasis. Leaf chemical traits on species level were mainly determined by temperature, precipitation and soil nutrients distribution.

英文摘要:

The aim of this study was to document the patterns of leaf C, N, P and their ratios to identify how these patterns varied with environmental variables. We measured leaf C, N and P concentrations of Phragmites australis at 5 marsh sites across northeastern China, and explored the effects of altitude, climate, and soil on leaf C, N and P. Results showed that leaf C, N, P and N/P were negatively related to altitude, and positively, except leaf P, to mean annual temperature and precipitation, while leaf C/N and C/P ratios showed opposite trends. Furthermore, leaf P was positively related to soil P and negatively to soil pH. The pattern of leaf P was more stable than leaf C and N responding to changing environment and had stronger stoichiometric homeostasis. Leaf chemical traits on species level were mainly determined by temperature, precipitation and soil nutrients distribution.

刊物名称:

Fresenius Environmental Bulletin

英文刊物名称:

Fresenius Environmental Bulletin

英文参与作者:

Jiang, M.; Lu, X. G.; Zhang, Z. S.; Lou, Y. J.


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