@article{YANG2026, 
author = {Yingying YANG and Tianyu YANG and Shaohua GUO and Fangyu LIU and Bing CAO and Junlong YANG and Xuelei XU},
title = {Ecological stoichiometric characteristics of plant-litter-soil continuum in four mixed communities on Luo mountain, Ningxia},
year = {2026},
journal = {Journal of Central South University of Forestry & Technology},
volume = {46},
number = {5},
pages = {137-148},
keywords = {ecological stoichiometric characteristics, mixed communities, homeostasis, nutrient resorption and utilization efficiency, Luo mountain in Ningxia},
url = {https://www.sciopen.com/article/10.14067/j.cnki.1673-923x.2026.05.014},
doi = {10.14067/j.cnki.1673-923x.2026.05.014},
abstract = {【Objective】This study investigated the ecological stoichiometric characteristics of the plant-litter-soil continuum, as well as nutrient resorption and utilization efficiency, in mixed communities of Luo mountain, Ningxia, to reveal the nutrient allocation and utilization strategies, and to provide a scientific foundation for vegetation protection and sustainable management in this region.【Method】Four typical mixed communities were investigated: mixed alpine shrub community, mixed low-mountain shrub community, mixed coniferous community and mixed conifer-broadleaf community. This study systematically analyzed the differences in C, N, P contents, and stoichiometric ratios across plant organs, litter and soil. It quantified their coupling relationships, homeostasis, resorption and utilization efficiencies of C, N, and P nutrients.【Result】1) Across all communities, the C content was lowest in roots, while the N and P contents were the highest in leaves. The C/N was the lowest in leaves; The C/P was the highest in branches; And the N/P was the lowest in roots. In addition, the plant P content was lower in the two shrub mixed communities compared to the two tree mixed communities, while the C/P and N/P were higher; 2) The litter C/N of the mixed conifer-broadleaf community was significantly higher than that in the mixed alpine shrub community (F=7.72, P&lt;0.05); 3) Soil C and C/P (F=33.44, P&lt;0.05; F=47.64, P&lt;0.05) in the two mixed tree communities, and soil N and N/P (F=17.76, P&lt;0.05; F=55.00, P&lt;0.05) in the mixed coniferous community were all significantly higher than in the two mixed shrub communities; 4) Significant positive correlations were found in P content across plant organs, litter, and soil (P&lt;0.05). Position and aspect significantly influenced ecological stoichiometric characteristics. The homeostasis of P, C/P, and N/P in leaves, branches, and roots was found to be sensitive; 5) The N and P reabsorption efficiency was stronger in the two mixed tree communities compared to the two mixed shrub communities. The nutrient utilization efficiency of P was higher than that of N and C across all communities.【Conclusion】Plant growth in mixed shrub communities was P-limited, while mixed tree communities were N-limited. P exhibited strong interconnections among components and higher utilization efficiency.}
}