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Phragmites australis + Typha latifolia Community Enhanced the Enrichment of Nitrogen and Phosphorus in the Soil of Qin Lake Wetland

机译:芦苇+香蒲群落增强了秦湖湿地土壤氮磷的富集。

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摘要

Aquatic plants play an essential role and are effective in mitigating lake eutrophication by forming complex plant-soil system and retaining total nitrogen (TN) and phosphorus (TP) in soils to ultimately reduce their quantities in aquatic systems. Two main vegetation types (Phragmites australis community and P. australis + Typha latifolia community) of Qin Lake wetland were sampled in this study for the analysis of TN and TP contents and reserves in the wetland soils. The results showed that (1) the consumption effect of Qin Lake wetland on soluble N was much more significant than on soluble P. (2) The efficiency of TN enrichment in wetland soil was enhanced by vegetation covering of P. australis and T. latifolia. (3) Wetland soil P was consumed by P. australis community and this pattern was relieved with the introduction of T. latifolia. (4) According to the grey relativity analysis, the most intensive interaction between plants and soil occurred in summer. In addition, the exchange of N in soil-vegetation system primarily occurred in the 0–15 cm soil layer. Our results indicated that vegetation covering was essential to the enrichment of TN and TP, referring to the biology-related fixation in the wetland soil.
机译:水生植物通过形成复杂的植物-土壤系统并保留土壤中的总氮(TN)和磷(TP)从而最终减少其在水生系统中的数量,在缓解湖泊富营养化方面发挥着至关重要的作用。本研究采样了秦湖湿地的两种主要植被类型(芦苇群落和澳大利亚芦苇+香蒲),以分析湿地土壤中总氮和总磷的含量及储量。结果表明:(1)秦湖湿地对可溶性氮的消耗效应远大于对可溶性磷的消耗。(2)植被覆盖对南美白对虾和紫花苜蓿提高了TN在湿地土壤中的富集效率。 。 (3)湿地土壤磷被南方假单胞菌群落所消耗,而这种模式由于引入了三叶紫杉而得以缓解。 (4)根据灰色相关性分析,植物与土壤之间的相互作用最强烈的是夏季。此外,土壤-植被系统中的氮交换主要发生在0-15cm的土壤层中。我们的结果表明,植被覆盖对于TN和TP的富集至关重要,是指湿地土壤中与生物学相关的固定。

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