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底栖鱼类的双重作用:在有和没有淹没的水生植物存在的情况下对水质的影响。

The dual role of benthic fish: Effects on water quality in the presence and absence of submerged macrophytes.

机构信息

State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, China.

College of Life Sciences, Zhejiang University, Hangzhou 310050, China.

出版信息

Water Res. 2024 Dec 1;267:122466. doi: 10.1016/j.watres.2024.122466. Epub 2024 Sep 17.

Abstract

Rebuilding a clear-water state dominated by submerged macrophytes is essential for addressing eutrophication, yet the impact of benthic fish on water quality is complex. We conducted two experiments to explore the interaction of submerged plants and benthic fish on the water quality. Experiment I investigated the water clearing effects of submerged macrophytes with varying coverage (from 0% to 40%) before and after the removal of benthic fish. Experiment II explored the impacts of benthic fish at different densities on aquatic ecosystems with and without submerged macrophytes. The results showed that an increase in submerged macrophytes coverage significantly enhanced the reduction of some major water quality parameters. We assert that the coverage of submerged macrophytes should not be lower than 40% to establish and sustain a clear-water state in shallow lakes. However, benthic fish significantly weaken the ability of submerged macrophytes to improve water quality. Surprisingly, the presence or absence of macrophytes may reverse the role of benthic fish in freshwater ecosystems. When macrophytes are present, benthic fish can cause water quality to deteriorate. Conversely, when macrophytes are absent, benthic fish with a density of ≤ 10 g/m can restrict the growth of phytoplankton by directly consuming algae or by disturbing sediments to increase turbidity, thereby potentially improving water quality. But the detrimental effects of benthic fish with higher densities may gradually outweigh their benefits to water clarity. Therefore, the percentage of submerged macrophyte cover in combination with the density of benthic fish play crucial roles in shaping the ecological effects of benthic fish and overall ecosystem dynamics. These findings underscore the importance of understanding ecosystem interactions and have practical implications for the management of shallow lakes.

摘要

重建以沉水植物为主的清水态对于解决富营养化问题至关重要,但底栖鱼类对水质的影响是复杂的。我们进行了两项实验,以探讨沉水植物和底栖鱼类对水质的相互作用。实验一在去除底栖鱼类前后,研究了不同盖度(0%至 40%)的沉水植物对水质的净化效果。实验二探讨了不同密度的底栖鱼类对有和没有沉水植物的水生生态系统的影响。结果表明,沉水植物盖度的增加显著增强了一些主要水质参数的降低。我们断言,沉水植物的盖度不应低于 40%,以在浅水湖泊中建立和维持清水态。然而,底栖鱼类显著削弱了沉水植物改善水质的能力。令人惊讶的是,沉水植物的存在与否可能会改变底栖鱼类在淡水生态系统中的作用。当沉水植物存在时,底栖鱼类会导致水质恶化。相反,当沉水植物不存在时,密度≤10 g/m 的底栖鱼类可以通过直接消耗藻类或通过干扰沉积物增加浊度来限制浮游植物的生长,从而可能改善水质。但是,密度较高的底栖鱼类的有害影响可能会逐渐超过其对水清澈度的益处。因此,沉水植物的盖度百分比与底栖鱼类的密度结合起来,对塑造底栖鱼类的生态效应和整体生态系统动态起着关键作用。这些发现强调了了解生态系统相互作用的重要性,并对浅水湖泊的管理具有实际意义。

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