Effects of nitrogen and phosphorus inputs on photosynthesis of three emergent macrophytes in a freshwater wetland

IF 4.5 2区 生物学 Q2 ENVIRONMENTAL SCIENCES
Xiaopan Wang , Jiayin Feng , Jinhua Zhang , Hongpeng Wang , Yunpeng Guo , Wenjing Ma , Yaru Lyu , Chao Wang , Xu Han , Jingyi Ru , Xueli Qiu , Shiqiang Wan
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Abstract

The excessive inputs of nitrogen (N) and phosphorus (P) into water bodies lead to eutrophication, resulting in significant alterations in nutrient cycles and wetland productivity. However, how N and P inputs regulate leaf functional traits and thus the photosynthesis of emergent macrophytes remains largely unexplored. Based on a field experiment simulating aquatic eutrophication in a freshwater wetland, this study was conducted to examine the influences of N and P inputs on leaf functional traits and the net photosynthetic rates of three dominant emergent macrophytes including Phragmites australis (P. australis), Sagittaria trifolia (S. trifolia), and Alisma plantago-aquatica (A. plantago-aquatica). The results showed that N input increased the net photosynthetic rates of P. australis and A. plantago-aquatica by 5.37 % and 14.7 %, but did not affect that of S. trifolia. Phosphorus input enhanced the net photosynthetic rate of P. australis by 3.20 %, but had no effects on the other macrophytes. Elevated leaf N content, leaf thickness and specific leaf area primarily drove the increases in photosynthesis of P. australis under eutrophication. By contrast, the stimulated chlorophyll content predominantly explained the enhanced photosynthetic rate of A. plantago-aquatica. In addition, the increased photosynthetic rates of emergent macrophytes positively contributed to plant biomass and ecosystem CH4 emissions, indicating the importance of plant photosynthesis in driving wetland C source-sink functions. Our findings highlight the crucial roles of leaf functional traits in regulating plant photosynthetic process, and can provide new insights into understanding plant photosynthesis and C cycling feedback under aquatic eutrophication.
氮磷输入对淡水湿地3种新兴大型植物光合作用的影响
水体中氮、磷的过量输入导致水体富营养化,导致湿地养分循环和生产力发生显著变化。然而,氮和磷输入如何调节叶片功能性状,从而调节新兴大型植物的光合作用,在很大程度上仍未被探索。通过模拟淡水湿地水体富营养化的田间试验,研究了氮、磷输入对芦苇(Phragmites australis)、三叶草(Sagittaria trifolia)和车前草(abisma plantago-aquatica) 3种优势新兴植物叶片功能性状和净光合速率的影响。结果表明:施氮量可使南芥和水田车前草的净光合速率分别提高5.37 %和14.7 %,但对三叶草的净光合速率没有影响。磷的输入使南菖蒲的净光合速率提高了3.20 %,但对其他大型植物没有影响。富营养化条件下,叶片氮含量、叶片厚度和比叶面积的增加是南菖蒲光合作用增加的主要驱动力。相比之下,受刺激的叶绿素含量是金车前草光合速率提高的主要原因。此外,新兴大型植物光合速率的增加对植物生物量和生态系统CH4排放有积极贡献,表明植物光合作用在驱动湿地碳源库功能中的重要性。本研究结果突出了叶片功能性状在调节植物光合过程中的重要作用,为理解水生富营养化条件下植物光合作用和C循环反馈提供了新的思路。
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来源期刊
Environmental and Experimental Botany
Environmental and Experimental Botany 环境科学-环境科学
CiteScore
9.30
自引率
5.30%
发文量
342
审稿时长
26 days
期刊介绍: Environmental and Experimental Botany (EEB) publishes research papers on the physical, chemical, biological, molecular mechanisms and processes involved in the responses of plants to their environment. In addition to research papers, the journal includes review articles. Submission is in agreement with the Editors-in-Chief. The Journal also publishes special issues which are built by invited guest editors and are related to the main themes of EEB. The areas covered by the Journal include: (1) Responses of plants to heavy metals and pollutants (2) Plant/water interactions (salinity, drought, flooding) (3) Responses of plants to radiations ranging from UV-B to infrared (4) Plant/atmosphere relations (ozone, CO2 , temperature) (5) Global change impacts on plant ecophysiology (6) Biotic interactions involving environmental factors.
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