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Ecological Stoichiometry and Stock Distribution of C, N, and P in Three Forest Types in a Karst Region of China

喀斯特 中国 地理 分布(数学) 生态学 库存(枪支) 化学计量学 环境科学 林业 自然地理学 生物 数学 化学 考古 数学分析 有机化学
作者
Wancai Wang,Yuanying Peng,Yazhen Chen,Shilong Lei,Xiaojun Wang,Taimoor Hassan Farooq,Xiaocui Liang,Chao Zhang,Wende Yan,Xiaoyong Chen
出处
期刊:Plants [Multidisciplinary Digital Publishing Institute]
卷期号:12 (13): 2503-2503 被引量:8
标识
DOI:10.3390/plants12132503
摘要

Ecological stoichiometry plays important roles in understanding the nutrient constraints on tree growth and development, as well in maintaining ecosystem services in forests, yet the characteristics of carbon:nitrogen:phosphorous (C:N:P) stoichiometry in forests under karst environment have not been sufficiently evaluated. In this study, concentration, distribution, stocks of Nitrogen (N) and Phosphorous (P), and ecological stoichiometry were studied in three common forest types: Masson pine natural forests (MPNF), Masson pine plantation forests (MPPF), and Slash pine plantation forests (SPPF) in a karst region of southwestern China. Results showed that N concentrations were higher in overstory than in understory and litter in the studied forests. However, P concentration was relatively low in overstory component of the forested ecosystems. Meanwhile, the N and P concentrations were higher in SPPF in the stem and litter, while these contents were higher in MPPF and MPNP in the overstory and understory. The N and P stocks ranged from 5.7–6.2 t ha−1, and 0.5–0.6 t ha−1 in the examined forests. The ecological stoichiometry of C:N:P in the three forest types was similar in litter (46–49:2:1), and relatively steady in soil (250–320:13–16:1) and tree leaf (100–200:14–20:1). Soil P status was the primary limiting factor in affecting tree growth in MPPF and SPPF (N:P ratio > 16), while both N and P conditions were the main restrictive factors in MPNP (N:P ratio = 15) in the study area. Our study provides scientific references and useful datasets of C:N:P stoichiometry for sustainable management of forest ecosystems in karst regions.
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