State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, China; School of Environmental Studies, China University of Geosciences, Wuhan 430074, China.
State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, China.
Water Res. 2020 Nov 1;186:116379. doi: 10.1016/j.watres.2020.116379. Epub 2020 Sep 2.
Submerged macrophyte restoration is the key stage in the reestablishment of an aquatic ecosystem. Previous studies have paid considerable attention to the effect of multiple environmental factors on submerged macrophytes. Meanwhile, few studies have been conducted regarding the spatial and seasonal characteristics of water and sediment properties and their long-term relationship with submerged macrophytes after the implementation of the submerged macrophytes restoration project. On a monthly basis, we monitored the spatial and seasonal variation in water parameters, sediment properties, and the submerged macrophyte characteristics of West Lake in Hangzhou from August 2013 to July 2019. From these measurements, we characterized the relationship between environmental factors and submerged macrophytes. Water nutrient concentrations continuously decreased with time, and the accumulation of sediment nutrients was accelerated as the submerged macrophyte communities developed on a long-term scale. The results indicated that the difference in water parameters was due to seasonal changes and land-use types in the watershed. The differences in the sediment properties were mainly attributed to seasonal changes and changes in the flow field. Redundancy analysis showed that the influence of water nutrients on the submerged macrophyte distribution was greater than that of sediment nutrients. The result also suggested that the developed root system, high stoichiometric homeostasis coefficients of P, and compensation ability of substantial leaf tissue may lead to a large distribution of Vallisneria natans in West Lake in Hangzhou. The correlation of water parameters and sediment properties with submerged macrophytes for a long time was very important as the restoration was achieved. To ensure the stability of the aquatic ecosystem after performing the submerged macrophyte restoration, a greater emphasis must be placed on reestablishing the entire ecosystem, including the restoration of aquatic animals and fish stocks. We expect these findings to serve as a reference for researchers and government agencies in the field of aquatic ecosystem restoration.
沉水植物恢复是水生生态系统重建的关键阶段。以前的研究已经对多种环境因素对沉水植物的影响给予了相当的关注。然而,在实施沉水植物恢复项目后,关于水和沉积物性质的空间和季节性特征及其与沉水植物的长期关系的研究较少。从 2013 年 8 月到 2019 年 7 月,我们每月监测杭州西湖的水参数、沉积物特性和沉水植物特征的空间和季节性变化。从这些测量中,我们描述了环境因素与沉水植物之间的关系。随着时间的推移,水中营养物质的浓度不断降低,而随着沉水植物群落的长期发展,沉积物中的营养物质积累速度加快。结果表明,水参数的差异是由于流域的季节性变化和土地利用类型造成的。沉积物性质的差异主要归因于季节性变化和流场变化。冗余分析表明,水养分对沉水植物分布的影响大于沉积物养分。结果还表明,发达的根系、高磷化学计量内稳系数和大量叶片组织的补偿能力可能导致杭州西湖苦草的广泛分布。水参数和沉积物性质与沉水植物的长期相关性对于恢复的实现非常重要。为了确保水生生态系统在进行沉水植物恢复后的稳定性,必须更加重视整个生态系统的重建,包括水生动物和鱼类资源的恢复。我们希望这些发现能为水生态系统恢复领域的研究人员和政府机构提供参考。