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船舶诱导的波列对大型调节河流(多瑙河,奥地利)滨岸带附生藻类群落的影响。

The effect of ship-induced wave trains on periphytic algal communities in the littoral zone of a large regulated river (River Danube, Austria).

机构信息

Christian Doppler Laboratory for Meta Ecosystem Dynamics in Riverine Landscapes, Institute of Hydrobiology and Aquatic Ecosystem Management, Department of Water, Atmosphere and Environment, University of Natural Resources and Life Sciences, Vienna, Gregor Mendel Straße 33, A-1180 Vienna, Austria; WasserCluster Lunz - Biolog. Station, Lunz am See, Dr. Carl Kupelwieser Prom. 5, A-3293 Lunz/See, Austria.

Christian Doppler Laboratory for Meta Ecosystem Dynamics in Riverine Landscapes, Institute of Hydrobiology and Aquatic Ecosystem Management, Department of Water, Atmosphere and Environment, University of Natural Resources and Life Sciences, Vienna, Gregor Mendel Straße 33, A-1180 Vienna, Austria.

出版信息

Sci Total Environ. 2024 Dec 1;954:176068. doi: 10.1016/j.scitotenv.2024.176068. Epub 2024 Sep 18.

Abstract

Riverine ecosystems are profoundly influenced by hydrological dynamics and natural flow regimes, which dictate the temporal variability of water levels and the amplitude of fluctuations. Human activities, particularly navigation and hydropower generation, have significantly altered these natural patterns, leading to detrimental impacts on the physical, chemical, and biological integrity of river ecosystems. The littoral zone, in particular, is highly susceptible to anthropogenic disturbances, experiencing disruptions in biological activity and biogeochemical processes. This study evaluates the effects of ship-induced wave trains on the structural and functional properties of periphytic algal communities in a regulated river environment. Using data from the Austrian Danube River, periphytic algae's immediate and long-term responses to wave events generated by different types of ships were investigated. Immediate reactions of periphytic algae to wave trains were characterized by reductions in the effective quantum yield of PS II, indicating stress-induced down-regulation of photosystem II photochemistry. Abrasion and remobilization of periphytic algae due to wave action led to increased resuspension of chlorophyll-a into the water column. Furthermore, ship-induced wave trains influenced the pigment composition of periphyton, with photoprotective mechanisms being activated in response to fluctuating light conditions. Long-term effects of wave impact on periphytic algae biomass varied depending on water depth and exposure to aerial stress. While wave action mitigated desiccation stress in shallow areas, it resulted in biomass reduction and alterations in community composition in deeper zones. Notably, the occurrence of diatoms decreased in wave-impacted areas, potentially shifting the community towards Chlorophyceae dominance. Overall, this study underscores the complexity of ship-induced wave impacts on riverine ecosystems and highlights the importance of considering both immediate and long-term responses of periphytic algal communities. Understanding these dynamics is crucial for informing sustainable management strategies aimed at mitigating the adverse effects of navigation activities on riverine biodiversity and ecosystem functioning.

摘要

河流生态系统深受水文动态和自然水流模式的影响,这些因素决定了水位的时间变化和波动幅度。人类活动,特别是航运和水力发电,极大地改变了这些自然模式,对河流生态系统的物理、化学和生物完整性造成了不利影响。特别是滨岸带,极易受到人为干扰,生物活动和生物地球化学过程受到干扰。本研究评估了船行波对调控河流环境中周丛藻类群落结构和功能特性的影响。本研究利用来自奥地利多瑙河的数据,研究了不同类型船只产生的波对周丛藻类的即时和长期响应。周丛藻类对波列车的即时反应表现为 PS II 的有效量子产量降低,表明光系统 II 光化学受到应激诱导的下调。波浪作用导致周丛藻类的磨损和再悬浮,将叶绿素-a 更多地悬浮到水柱中。此外,船行波列车影响了周丛生物的色素组成,光保护机制被激活以应对波动的光照条件。波冲击对周丛藻类生物量的长期影响取决于水深和暴露于空气胁迫的情况。虽然波浪作用减轻了浅水区的干燥胁迫,但在较深区域,波浪作用导致生物量减少和群落组成的改变。值得注意的是,在受波影响的区域,硅藻的出现减少,可能导致群落向绿藻优势转变。总的来说,本研究强调了船行波对河流生态系统的影响的复杂性,并强调了考虑周丛藻类群落的即时和长期响应的重要性。了解这些动态对于为减轻航运活动对河流生物多样性和生态系统功能的不利影响提供可持续管理策略至关重要。

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