The Latitudinal Patterns of Leaf and Soil C:N:P Stoichiometry in the Loess Plateau of China
Zhao Fang1,2; Dong-Dong Li2,3; Feng Jiao1,2
2019-03-18
发表期刊Frontiers in Plant Science
卷号10期号:85页码:85
摘要

Understanding the spatial patterns and the driving factors of plant leaf and soil stoichiometry are critical for improving the parameterization of future ecological models and to predict the responses of ecosystems to environmental changes. This study aimed to determine how the latitudinal patterns of leaf and soil C:N:P stoichiometry are affected by climate and vegetation types in the dryland ecosystems. The concentrations of leaf C, N, and P in herb community as well as soil nutrient concentrations along a 500–km–long latitudinal gradient in Northern Shaanxi of the Loess Plateau, were measured. The results showed that the soil C, N, P and C:N:P ratios at all three depths (0–10, 10–20, and 20–40 cm) showed significant latitudinal trends (except for soil C:N ratios) (P < 0.01). In general, the soil C, N and C:N:P ratios decreased exponentially while soil P increased first and then decreased with the latitude. The soil C, N, C:P, and N:P ratios at all three depths (0–10, 10–20 and 20–40 cm) were positively correlated with MAT and MAP (P < 0.05), while soil P and C:N ratios at all three depths were weakly correlated with MAT and MAP (P > 0.05). In addition, leaf C:N:P stoichiometry was significantly correlated with the latitude, MAT, and MAP (except for N:P ratios) (P < 0.01), such that, leaf C, C:N, and C:P ratios decreased as the latitude increased and MAT and MAP decreased, and leaf N, P concentrations increased as the latitude increased and MAT and MAP decreased, while leaf N:P ratios were weakly correlated with the latitude, MAT, and MAP (P > 0.05). Furthermore, the leaf C:N:P stoichiometry of herbaceous communities was related to the soil properties (except for soil P), and we found that the C:P ratios between the soil and leaves were strongly correlated. Compared with the global scale, the relatively high N:P ratios indicated that the vegetation growth of the herb community in the dryland of the Loess Plateau was more susceptible to P limitation.

关键词Ecological Stoichiometry Climatic Factors Herb Community Vegetation Types Leaves Soil Loess Plateau
DOI10.3389/fpls.2019.00085
收录类别SCI
引用统计
文献类型期刊论文
条目标识符sbir.nwafu.edu.cn/handle/361005/9184
专题水保所2018--2022届毕业生论文(学位论文、期刊论文)
通讯作者Dong-Dong Li
作者单位1.State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau, Institute of Soil and Water Conservation, Northwest A&F University
2.Institute of Soil and Water Conservation, Chinese Academy of Sciences and Ministry of Water Resources
3.University of Chinese Academy of Sciences
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Zhao Fang,Dong-Dong Li,Feng Jiao. The Latitudinal Patterns of Leaf and Soil C:N:P Stoichiometry in the Loess Plateau of China[J]. Frontiers in Plant Science,2019,10(85):85.
APA Zhao Fang,Dong-Dong Li,&Feng Jiao.(2019).The Latitudinal Patterns of Leaf and Soil C:N:P Stoichiometry in the Loess Plateau of China.Frontiers in Plant Science,10(85),85.
MLA Zhao Fang,et al."The Latitudinal Patterns of Leaf and Soil C:N:P Stoichiometry in the Loess Plateau of China".Frontiers in Plant Science 10.85(2019):85.
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