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不同磷富集频率对中国亚热带贫磷湖泊湿地植物生长及植物碳氮磷的影响

Influence of Differ P Enrichment Frequency on Plant Growth and Plant C:N:P in a P-Limited Subtropical Lake Wetland, China.

作者信息

Li Feng, Hu Cong, Xie Yonghong, Liu Wenzhi, Chen Xinsheng, Deng Zhengmiao, Hou Zhiyong

机构信息

Key Laboratory of Agro-ecological Processes in Subtropical Region, Chinese Academy of Sciences, Changsha, China.

Dongting Lake Station for Wetland Ecosystem Research, Institute of Subtropical Agriculture Chinese Academy of Sciences, Changsha, China.

出版信息

Front Plant Sci. 2018 Nov 5;9:1608. doi: 10.3389/fpls.2018.01608. eCollection 2018.

Abstract

Phosphorus (P) enrichment as a result of anthropogenic activities can potentially alter plant C:N:P stoichiometry. However, the influence of different P enrichment frequencies on plant C:N:P stoichiometry in P-limited ecosystems is still unclear. In this study, we conducted a P-addition experiment to elucidate the effect of various P enrichment frequencies on the plant C:N:P stoichiometry of in a freshwater wetland at Dongting Lake, China. We used four P enrichment frequencies (treatment A: no P addition; treatment B: three 0.1 g kg additions at 10-day intervals; treatment C: two 0.15 g kg additions at 15-day intervals; and treatment D: one 0.3 g kg addition during the experimental period) in a factorial design with an experimental duration of 30 days. Biomass accumulation was lowest in the treatment A and highest in the treatment C, and increased with decreasing P addition frequency. The shoot:root ratio did not differ significantly between the four treatments. Both foliar and root C concentrations were not significantly different between the treatments. Foliar N concentration was significantly lower in the treatment D than in the other three treatments, while root N concentration did not differ significantly between the treatments. Both foliar and root P concentrations, and foliar C:N were much higher in the treatment B than in the treatment A. However, root C:N did not differ significantly between treatments. Both foliar and root C:P and N:P of were lower in the treatment B than in the treatment A. These results indicated that different frequencies of P addition significantly influenced plant growth. Moreover, P enrichment, rather than frequency, significantly influenced plant C:N:P stoichiometry. Our results improve our understanding of the influence of different P enrichment frequencies on plant C:N:P stoichiometry and nutrient cycling in freshwater wetlands.

摘要

人为活动导致的磷(P)富集可能会改变植物的碳氮磷化学计量比。然而,在磷限制的生态系统中,不同磷富集频率对植物碳氮磷化学计量比的影响仍不清楚。在本研究中,我们进行了一项磷添加实验,以阐明不同磷富集频率对中国洞庭湖淡水湿地植物碳氮磷化学计量比的影响。我们采用了四种磷富集频率(处理A:不添加磷;处理B:每隔10天添加三次,每次0.1 g/kg;处理C:每隔15天添加两次,每次0.15 g/kg;处理D:在实验期间添加一次,0.3 g/kg),采用析因设计,实验持续30天。生物量积累在处理A中最低,在处理C中最高,并随着磷添加频率的降低而增加。四种处理之间的地上部与根部比值没有显著差异。各处理间叶片和根部的碳浓度没有显著差异。处理D中的叶片氮浓度显著低于其他三种处理,而各处理间根部氮浓度没有显著差异。处理B中的叶片和根部磷浓度以及叶片碳氮比均远高于处理A。然而,各处理间根部碳氮比没有显著差异。处理B中的叶片和根部碳磷比和氮磷比均低于处理A。这些结果表明,不同的磷添加频率显著影响植物生长。此外,磷富集而非频率显著影响植物的碳氮磷化学计量比。我们的研究结果增进了我们对不同磷富集频率对淡水湿地植物碳氮磷化学计量比和养分循环影响的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d05/6231420/323da592315e/fpls-09-01608-g001.jpg

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