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Resource conservation strategy helps explain patterns of biological invasion in a low-N environment

营养物 生物 相对增长率 生态学 植物 乡土植物 植物生长 氮气 引进物种 入侵物种 动物科学 增长率 化学 几何学 数学 有机化学
作者
Guangqian Ren,Furong He,Jianfan Sun,Wenjie Hu,Ahmad Azeem,Shanshan Qi,Bin Yang,Miaomiao Cui,Kun Jiang,Daolin Du
出处
期刊:Biochemical Systematics and Ecology [Elsevier BV]
卷期号:94: 104205-104205 被引量:14
标识
DOI:10.1016/j.bse.2020.104205
摘要

Several studies have been conducted on the distribution of carbon (C) and nitrogen (N) in plant, however, there has been rare data linking Ecological Stoichiometry to plant invasion success, especially in a low-N environment. Accordingly, an experiment in this study was performed to explore the nutrition distribution and stoichiometry among various organs in plant, contributing to plant invasion. According to the results of this study, both invasive and native species exhibited a higher C, N concentration and lower C/N ratio in their leaf compared with stem and root overall (p < 0.05), the stem exhibited the lower N concentration, higher C concentration and C/N ratio compared with leaf and root overall (p < 0.05). In addition, C and N concentrations of invasive Solidago canadensis were significantly lower, while the C/N and Relative Growth Rate (RGR) were significantly higher than those of the native Artemisia argyi (p < 0.05). As revealed from the mentioned results, plant invasion success in low-N environmental conditions was dependent on the following: 1) Invasive used more conservative nutrients strategy (higher C/N ratio), instead of the high capacity to retain or resorb nutrients compared with natives; 2) Invasive species (higher RGR) had less N-limited growth as compared with natives. Furthermore, this study presented baseline information to describe the internal mechanism of plant invasion, thereby helping predict and control invasive species.
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