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Effects of Artificial LED Light on the Growth of Three Submerged Macrophyte Species during the Low-Growth Winter Season: Implications for Macrophyte Restoration in Small Eutrophic Lakes

机译:人工LED光对低生长冬季三种浸没式宏观物质生长的影响:对小富营养湖中麦细胞恢复的影响

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Eutrophication of lakes is becoming a global environmental problem, leading to, among other things, rapid reproduction of phytoplankton, increased turbidity, loss of submerged macrophytes, and the recovery of these plants following nutrient loading reduction is often delayed. Artificial light supplement could potentially be a useful method to help speeding up recovery. In this study, three common species of submerged macrophytes, Vallisneria natans , Myriophyllum spicatum and Ceratophyllum demersum , were exposed to three LED light treatments (blue, red and white) and shaded (control) for 100 days (from 10 November 2016 to 18 January 2017) in 12 tanks holding 800 L of water. All the three LED light treatments promoted growth of the three macrophyte species in terms of shoot number, length and dry mass. The three light treatments differed in their effects on the growth of the plants; generally, the red light had the strongest promoting effects, followed by blue and white. The differences in light effects may be caused by the different photosynthetic photon flux density (PPFD) of the lights, as indicated by an observed relationship of PPFD with the growth variables. The three species also responded differently to the light treatments, V. natans and C. demersum showing higher growth than M. spicatum . Our findings demonstrate that artificial light supplement in the low-growth winter season can promote growth and recovery of submerged macrophytes and hence potentially enhance their competitiveness against phytoplankton in the following spring. More studies, however, are needed to elucidate if LED light treatment is a potential restoration method in small lakes, when the growth of submerged macrophytes are delayed following a sufficiently large external nutrient loading reduction for a shift to a clear macrophyte state to have a potential to occur. Our results may also be of relevance when elucidating the role of artificial light from cities on the ecosystem functioning of lakes in urban areas.
机译:湖泊的富营养化是成为一个全球环境问题,导致植物植物的快速繁殖,浊度增加,淹没的宏观物质丧失,以及在营养负载减少后恢复这些植物。人造光补充剂可能是有助于加速恢复的有用方法。在本研究中,三种常见的浸没式宏观物种,Vallisneria Natiss,Myriophyllum Spicatum和Ceratophyllum Demersum,暴露于三个LED光处理(蓝色,红色和白色)和阴影(对照)100天(从2016年11月10日到1月18日2017年)在12个坦克中持有800升水。所有三种LED光处理在芽数,长度和干燥质量方面促进了三种宏粒物种的生长。三种光学处理差异不同于植物生长的影响;通常,红灯具有最强的促进效果,其次是蓝色和白色。光效应的差异可能是由光的不同光合光子磁通密度(PPFD)引起的,如观察到的PPFD与生长变量的关系所示。这三种物种也与光处理,V. Nat体和C. Demersum响应不同,表现出比M. Spicatum更高的生长。我们的研究结果表明,低增长冬季的人造光补充剂可以促进浸没式宏观物质的生长和恢复,因此可能在以下春季增强对浮游植物的竞争力。然而,如果LED轻微处理是小湖泊的潜在恢复方法,则需要进行更多的研究,当浸没式巨粒细胞的生长后延迟到足够大的外部营养加载降低以转移到透明的宏观物质状态以具有潜力发生。当阐明人造光从城市对城市地区湖泊生态系统运作的作用时,我们的结果也可能具有相关性。

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