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温度与营养物质之间的相互作用:浮游植物群落如何应对气候变化?

Interaction between temperature and nutrients: How does the phytoplankton community cope with climate change?

作者信息

Dory Flavia, Nava Veronica, Spreafico Morena, Orlandi Valentina, Soler Valentina, Leoni Barbara

机构信息

University of Milano-Bicocca, Department of Earth and Environmental Sciences, Piazza della Scienza 1, Milan, Italy.

University of Milano-Bicocca, Department of Earth and Environmental Sciences, Piazza della Scienza 1, Milan, Italy.

出版信息

Sci Total Environ. 2024 Jan 1;906:167566. doi: 10.1016/j.scitotenv.2023.167566. Epub 2023 Oct 4.

Abstract

Climate change and increasing nutrient concentrations are two major threats to lake ecosystems. Furthermore, warming is exacerbating the symptoms of eutrophication in freshwaters. Facing both environmental challenges simultaneously is more urgent than ever to preserve and recover water quality and protect the remaining biodiversity. Here, we used long-term observational data to investigate the phytoplankton response to the interaction between temperature and nutrient variations in a deep mesotrophic subalpine lake (L. Iseo, Italy). Despite the existing management programs, we observed a deterioration of the physicochemical status of the lake between 1993 and 2021 in the water column. The average rate of temperature increase was 0.02 °C y across the studied period and accelerated after the last complete mixing events (2005 and 2006), particularly during the last decade (0.08 °C y). Water warming caused severe impacts on nutrient cycling, reflected by the overall increase in nutrient concentrations. The direct effect of warming was of great importance for phytoplankton, leading to an increase in total biovolume and a loss of diversity and promoting the dominance of Cyanobacteria. Nutrient variations, especially TN and the DSi:TP ratio, considerably structured the community composition. The modification of physicochemical parameters caused by the last complete mixing events led to a remarkable, long-term taxonomical and functional reorganization of the phytoplankton community. This study illustrates that phytoplankton in deep subalpine lakes will experience severe changes in the upcoming years, and that complete mixing events may constitute a threshold for community transformation. Our results stress the importance of using powerful interpretative models with multifaceted long-term datasets to disentangle the pathways by which temperature and nutrients could regulate the phytoplankton community. Our conclusions will help to integrate climate change into mitigation strategies to preserve ecosystem structure and functions.

摘要

气候变化和养分浓度增加是湖泊生态系统面临的两大主要威胁。此外,气候变暖正在加剧淡水富营养化的症状。同时应对这两个环境挑战对于保护和恢复水质以及保护剩余的生物多样性比以往任何时候都更加紧迫。在此,我们利用长期观测数据研究了意大利亚高山中营养型深水湖(伊塞奥湖)中浮游植物对温度和养分变化相互作用的响应。尽管有现有的管理计划,但我们观察到1993年至2021年期间该湖水柱的物理化学状况有所恶化。在整个研究期间,温度平均上升速率为每年0.02℃,在最后一次完全混合事件(2005年和2006年)之后加速,特别是在过去十年(每年0.08℃)。水温升高对养分循环产生了严重影响,表现为养分浓度总体增加。变暖的直接影响对浮游植物非常重要,导致总生物量增加、多样性丧失,并促进了蓝藻的优势地位。养分变化,尤其是总氮和溶解硅与总磷的比率,对群落组成有很大影响。最后一次完全混合事件引起的物理化学参数变化导致浮游植物群落发生了显著的、长期的分类学和功能重组。这项研究表明,亚高山深水湖中的浮游植物在未来几年将经历严重变化,而完全混合事件可能构成群落转变的一个阈值。我们的结果强调了使用具有多方面长期数据集的强大解释模型来理清温度和养分调节浮游植物群落的途径的重要性。我们的结论将有助于将气候变化纳入缓解策略,以保护生态系统结构和功能。

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