Patterns of carbon, nitrogen and phosphorus dynamics during decomposition of fern leaf and fine root in a subtropical forest
文献类型: 外文期刊
第一作者: Yang, Shufang
作者: Yang, Shufang;Dou, Pengpeng;Wang, Fang;Yang, Guangrong;Lin, Dunmei;Wang, Hongjuan
作者机构:
关键词: fern; leaf decomposition; fine root decomposition; nutrient release; stoichiometry; above- and below-ground covariation
期刊名称:CHINESE SCIENCE BULLETIN-CHINESE ( 影响因子:1.1; )
ISSN: 0023-074X
年卷期: 2019 年 64 卷 23 期
页码:
收录情况: SCI
摘要: Litter decomposition is a major driver of carbon and nutrient cycles and has major implications for carbon sequestration and plant nutrient availability in terrestrial ecosystems. The vast majority of litter decomposition studies have focused on the tree component in forest ecosystems, while little attention has been paid to understory components. Ferns, one ancient and diverse group of vascular plants, comprise a significant part of most forest understory layer. However, empirical study regarding decomposition rate and carbon, nitrogen and phosphorus release patterns of fern leaves and fine roots remains rare. Therefore, it is difficult to predict the ecological consequences of fern community changes resulting from forest management practices or other environmental changes. In this study, we examined the patterns of mass loss and carbon, nitrogen, and phosphorus gain, retention or loss during the decomposition of leaves and fine roots (< 2 mm) of 12 herbaceous fern species in a subtropical evergreen broad-leaved forest in Jinyun Mountain, Southwest China. We measured the initial carbon, nitrogen, and phosphorus concentrations of leaves and fine roots, and monitored the changes in carbon, nitrogen, and phosphorus after 113, 198, 386 and 586 day' decomposition in the field. We hypothesized that: (H-1) fern leaves would decompose faster than fine roots; (H-2) nitrogen and phosphorus release patterns would be affected by the initial tissue nitrogen and phosphorus concentrations; and (H-3) carbon, nitrogen and phosphorus release patterns of leaves and fine roots would coordinate across different fern species. The results showed that: (1) Initial carbon concentration of fern leaves were similar to fine roots, while initial nitrogen and phosphorus concentrations of leaves were significantly higher than those of fine roots. Litter mass, carbon, nitrogen and phosphorus remains of fern leaves were generally significantly lower than those of fine roots, supporting our first hypothesis (H-1). (2) Carbon, nitrogen and phosphorus of fern leaves and roots exhibited different loss patterns. Leaf carbon, nitrogen and phosphorus generally directly lost during the entire decomposition process. By contrast, carbon, nitrogen and phosphorus of fine roots showed more complicated patterns such as direct loss, gain-loss, gain-loss-gain and always gain. In support of our second hypothesis (H-2), we found that nitrogen or phosphorus release patterns were influenced by the initial tissue nitrogen or phosphorus concentrations, respectively. (3) Carbon remains between leaves and fine roots were significantly correlated after 113, 198 and 386 day' decomposition in the field, but not after 586 d. Phosphorus remains between leaves and fine roots were significantly correlated after 198, 386 and 586 day' decomposition in the field, but not after 113 d. By contrast, there was no significant relationship of the nitrogen remains between leaves and fine roots during the entire decomposition process. Thus, our third hypothesis (H-3) was only partly supported. This result suggests that the above- and below-ground covariation patterns depend on specific element and the duration of decomposition. Our study improves our understanding of how fern species influence the carbon and nutrient cycling in subtropical forest.
分类号:
- 相关文献
作者其他论文 更多>>
-
A ratiometric fluorescent probe for the determination of quinolone antibiotics in milk based on N and S co-doped carbon quantum dots
作者:Wang, Fang;Li, Xiaoyun;Zhang, Yuchen;Li, Hui;Jiang, Shanxue;Li, Dandan;Yao, Zhiliang;Wang, Fang;Li, Xiaoyun;Zhang, Yuchen;Li, Hui;Jiang, Shanxue;Li, Dandan;Yao, Zhiliang;Wang, Fang;Li, Xiaoyun;Zhang, Yuchen;Li, Hui;Jiang, Shanxue;Li, Dandan;Yao, Zhiliang;Han, Jiajun;Gong, Wenwen
关键词:Carbon quantum dot; Ratiometric fluorescence probe; Moxifloxacin; Gatifloxacin; Ofloxacin; Milk
-
Water-soluble stimuli-responsive supramolecular nanoagrochemicals based on macrocycle compounds
作者:Song, Ya-Hui;Bian, Qiang;Yang, Yi-Hang;Zhang, Ying-Ming;Liu, Yu;Wang, Fang;Liu, Jinpeng
关键词:Supramolecular assemblies; Host-guest complexation; Macrocycles; Stimuli-responsiveness; Nanoagrochemicals
-
High-precise determination of the drought and cold resistance of forage seeds using terahertz time-domain spectroscopy
作者:Wang, Fang;Xiao, Ziwei;Liu, Zilong;Zhang, Chunhong;Yin, Panpan;Liu, Lemeng;Xiang, Wenfeng
关键词:Terahertz time domain spectroscopy; Cold and drought resistance; Forage seeds; Multilayer structure propagation model
-
Development of a double-antibody sandwich ELISA for quantification of mutated EPSPS gene expression in rice
作者:Luo, Biao;Rao, Liqun;Wang, Qiming;Luo, Biao;Zhang, Xianwen;Wang, Fang;Wang, Yan;Zhang, Xianwen;Wu, Wei;Lin, Chaoyang
关键词:5-Enolpyruvyl-shikimate-3-phosphate synthase (EPSPS); DAS-ELISA; OsmEPSPS detection; Glyphosate-tolerant rice; Glyphosate-tolerant rice
-
Construction of P450 scaffold biocatalysts for the biodegradation of five chloroanilines
作者:Yang, Ridong;Wang, Fang;Xu, Jiakun;Yang, Ridong;Che, Hongxia;Shoji, Osami;Lin, Yingwu
关键词:P450BM3; Artificial metalloenzyme; Chloroanilines; Biodegradation
-
Construction of artificial peroxidase based on myoglobin scaffold for efficient degradation of meloxicam
作者:Zhang, Weikang;Yang, Yadan;Wang, Fang;Xu, Jiakun;Zhang, Weikang;Yang, Yadan;Meng, Xiangmin;Lin, Ying-Wu
关键词:Meloxicam; Myoglobin; Biodegradation; Structure-function relationship; Degradation; Environmental remediation
-
Application of carbon quantum dots as fluorescent probes in the detection of antibiotics and heavy metals
作者:Wang, Fang;Zhang, Yuchen;Li, Hui;Jiang, Shanxue;Li, Dandan;Yao, Zhiliang;Wang, Fang;Zhang, Yuchen;Li, Hui;Jiang, Shanxue;Li, Dandan;Yao, Zhiliang;Gong, Wenwen;Han, Jiajun
关键词:Antibiotics; Heavy metals; Carbon quantum dots; Fluorescence quenching; Fluorescence enhancement