Leymus chinensis (L. chinensis) is the dominant plant in the eastern margins of the Eurasian temperate grasslands. It is a very robust species, exhibiting good saline-alkali resistance and stabilizing soil. In this study, 67 soil samples and L. chinensis were collected in western Jilin province, China. The contents of N, P, K, S, Mn, Fe, Zn, Cu and Na were measured, revealing that the growth of L. chinensis was mainly restricted by N based on the stoichiometric N: P ratios of plant. Furthermore, path analysis indicated that N was significantly correlated with K, S, Cu, and Zn. Imbalances in the homeostasis of these four elements may thus constrain N. The homeostasis index of Cu (HCu) in sites with 100%-70% of vegetation cover was only 0.79,...
Vegetation uptake of nitrogen and base cations may be an important source of soil acidity. In this s...
In China, rapid growing population and economy are confronted with shortage of fresh water, food and...
The groundwater level is the main factor affecting the distribution of soil salinity and vegetation ...
Soil salinization is a major cause of land degradation and hinders the effective utilization of agri...
Leymus chinensis is a saline-alkali tolerant grass of the Eurasian Steppe of great economic, ecologi...
Leymus chinensis has extensive ecological adaptability and can grow well in saline-alkaline soils. T...
Copyright © 2014 Xiaoyu Li et al.This is an open access article distributed under theCreativeCommons...
Enhanced deposition of atmospheric nitrogen (N) resulting from anthropogenic activities has negative...
To elucidate the physiological and metabolic mechanism of perennial grass responses to alkali stress...
Bauxite residue disposal areas (BRDAs) are physically degraded and hostile to plant growth. Neverthe...
Despite the well-known importance of all elements to plant growth and nutrient fluxes in ecosystems,...
Leymus chinensis (Trin.) Tzvel. (Poaceae) is a dominant plant in the western Songnen Plain of northe...
BackgroundWhile clonal integration can improve the performance of rhizomatous plants, it remains unc...
It has been shown that three wild soybean species, Glycine soja, G. tomentella and G. tabacina, in T...
Despite the well-known importance of all elements to plant growth and nutrient fluxes in ecosystems,...
Vegetation uptake of nitrogen and base cations may be an important source of soil acidity. In this s...
In China, rapid growing population and economy are confronted with shortage of fresh water, food and...
The groundwater level is the main factor affecting the distribution of soil salinity and vegetation ...
Soil salinization is a major cause of land degradation and hinders the effective utilization of agri...
Leymus chinensis is a saline-alkali tolerant grass of the Eurasian Steppe of great economic, ecologi...
Leymus chinensis has extensive ecological adaptability and can grow well in saline-alkaline soils. T...
Copyright © 2014 Xiaoyu Li et al.This is an open access article distributed under theCreativeCommons...
Enhanced deposition of atmospheric nitrogen (N) resulting from anthropogenic activities has negative...
To elucidate the physiological and metabolic mechanism of perennial grass responses to alkali stress...
Bauxite residue disposal areas (BRDAs) are physically degraded and hostile to plant growth. Neverthe...
Despite the well-known importance of all elements to plant growth and nutrient fluxes in ecosystems,...
Leymus chinensis (Trin.) Tzvel. (Poaceae) is a dominant plant in the western Songnen Plain of northe...
BackgroundWhile clonal integration can improve the performance of rhizomatous plants, it remains unc...
It has been shown that three wild soybean species, Glycine soja, G. tomentella and G. tabacina, in T...
Despite the well-known importance of all elements to plant growth and nutrient fluxes in ecosystems,...
Vegetation uptake of nitrogen and base cations may be an important source of soil acidity. In this s...
In China, rapid growing population and economy are confronted with shortage of fresh water, food and...
The groundwater level is the main factor affecting the distribution of soil salinity and vegetation ...