去除大型植物会影响低地溪流的营养吸收和代谢

IF 1.9 4区 生物学 Q2 MARINE & FRESHWATER BIOLOGY Aquatic Botany Pub Date : 2023-07-17 DOI:10.1016/j.aquabot.2023.103694
Ada Pastor , Cecilie M.H. Holmboe , Olatz Pereda , Pau Giménez-Grau , Annette Baattrup-Pedersen , Tenna Riis
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引用次数: 1

摘要

大型植物在低地溪流中提供必要的生态系统服务,包括营养吸收,可以减少向脆弱沿海地区的下游运输。尽管如此,为了确保水的输送和农田的有效径流,在许多欧洲河流中定期清除水生植物生物量(即除草做法)。然而,除草对河流生态系统过程的影响还没有很好的文献记载。本研究以丹麦为研究对象,研究了夏季刈割杂草对3条低地河流养分保留和生态系统代谢的影响,这些河流具有不同的优势植被群落(淹没植物和新兴植物)。我们的研究结果显示营养潴留减少;铵的吸收速度下降34 - 77%,磷酸盐的吸收速度下降50 - 77%。除草后生态系统代谢率也有所下降,包括总初级产量(9%、60%和85%)和呼吸(47%、69%和76%)。除草对这些生态系统过程的影响在除草发生3周后占主导地位。了解除草对河流生态系统功能的影响可以改进基于自然的管理策略,以控制下游沿海地区的富营养化。
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Macrophyte removal affects nutrient uptake and metabolism in lowland streams

Macrophytes provide essential ecosystem services in lowland streams, including nutrient uptake that can reduce downstream transport to vulnerable coastal areas. Despite that, to ensure water conveyance and effective run off from agricultural fields, aquatic plant biomass is removed regularly in many European streams (i.e. weed cutting practices). However, the impacts of weed cutting on stream ecosystem processes are not yet well documented. Here, we studied the effect of weed cutting on nutrient retention and ecosystem metabolism in three lowland streams with contrasting dominant vegetation communities (submergent and emergent plants) during summer in Denmark. Our results showed a decrease in nutrient retention; uptake velocity of ammonium decreased 34–77 % and of phosphate decreased 50–77 %. Ecosystem metabolic rates also decreased after weed cutting, both in gross primary production (9 %, 60 % and 85 %) and respiration (47 %, 69 % and 76 %). The effects of weed cutting on these ecosystem processes prevailed three weeks after the cutting occurred. Understanding the effects of weed cutting on stream ecosystem functioning can improve nature-based management strategies to control eutrophication of downstream coastal areas.

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来源期刊
Aquatic Botany
Aquatic Botany 生物-海洋与淡水生物学
CiteScore
3.80
自引率
5.60%
发文量
70
审稿时长
6 months
期刊介绍: Aquatic Botany offers a platform for papers relevant to a broad international readership on fundamental and applied aspects of marine and freshwater macroscopic plants in a context of ecology or environmental biology. This includes molecular, biochemical and physiological aspects of macroscopic aquatic plants as well as the classification, structure, function, dynamics and ecological interactions in plant-dominated aquatic communities and ecosystems. It is an outlet for papers dealing with research on the consequences of disturbance and stressors (e.g. environmental fluctuations and climate change, pollution, grazing and pathogens), use and management of aquatic plants (plant production and decomposition, commercial harvest, plant control) and the conservation of aquatic plant communities (breeding, transplantation and restoration). Specialized publications on certain rare taxa or papers on aquatic macroscopic plants from under-represented regions in the world can also find their place, subject to editor evaluation. Studies on fungi or microalgae will remain outside the scope of Aquatic Botany.
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