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Eutrophic water or fertile sediment: which is more important for the growth of invasive aquatic macrophyte Myriophyllum aquaticum?

机译:富营养化的水或肥沃的沉积物:哪种对入侵水生植物的生长更重要? Myriophyllum aquaticum

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摘要

Invasive macrophyte Myriophyllum aquaticum is capable of assimilating nutrients from both the sediments and the water column. However, which is the major source of nutrients supporting M. aquaticum growth under various nutrient regimes has not been well documented. Here we conducted a two-factorial outdoor experiment (three levels of nutrient loading and two types of sediments) from 23 May to 27 June 2016, to assess M . aquaticum responses to different nutrient levels in the water column and the sediment. Results showed that concentrations of total nitrogen, total phosphorus and chlorophyll a in the water column increased in the treatment groups, but decreased slightly in the control group (nutrient-poor sediment and no nutrient addition). Sediment type had a significant effect on the growth M . aquaticum , while there were no significant effects of nutrient loading levels and the interactions between the two factors. Mean relative growth rate, mean plant height, mean stem diameter, the number of lateral branches and roots in the nutrient-rich sediment treatments were 1.6, 1.2, 1.6, 3.2 and 5.9 folds greater than in the nutrient-poor sediment treatments, respectively. These results suggest that nutrient-rich sediment has a positive effect on the growth of M. aquaticum . This study reveals possible expansion mechanism of the exotic M . aquaticum in China, and may provide valuable information on the ecological restoration of eutrophic freshwaters.
机译:外来入侵植物Myriophyllum aquaticum能够吸收沉积物和水柱中的养分。然而,在各种养分制度下,水是支撑水生莫拉氏菌生长的主要养分来源,目前尚未有充分的文献记载。在这里,我们于2016年5月23日至6月27日进行了两因素户外试验(三种养分水平和两种沉积物类型),以评估M。水生动物对水柱和沉积物中不同养分水平的反应。结果表明,水组中总氮,总磷和叶绿素a的浓度在处理组中有所增加,但在对照组中则略有下降(营养不良的沉积物且未添加任何营养)。沉积物类型对生长M有显着影响。虽然没有显着影响养分含量和两个因素之间的相互作用。富营养泥沙处理的平均相对生长速率,平均株高,平均茎直径,侧枝和根的数量分别比贫营养泥沙处理高1.6倍,1.2倍,1.6倍,3.2倍和5.9倍。这些结果表明,营养丰富的沉积物对水生分枝杆菌的生长具有积极作用。这项研究揭示了外来M的可能扩展机制。中国的水生植物,并可能提供有关富营养化淡水生态修复的有价值的信息。

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