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原位行为反应和大型藻类(Characeae,Charophyceae)对铁过载的生态化学计量学调整:对湖泊修复的启示。

In-situ behavioural response and ecological stoichiometry adjustment of macroalgae (Characeae, Charophyceae) to iron overload: Implications for lake restoration.

机构信息

Department of Water Protection, Institute of Environmental Biology, Faculty of Biology, Adam Mickiewicz University, Poznań, Uniwersytetu Poznańskiego 6, 61-614, Poznań, Poland.

Department of Hydrobiology, Institute of Environmental Biology, Faculty of Biology, Adam Mickiewicz University, Poznań, Uniwersytetu Poznańskiego 6, 61-614, Poznań, Poland.

出版信息

Water Res. 2020 Apr 15;173:115602. doi: 10.1016/j.watres.2020.115602. Epub 2020 Feb 10.

Abstract

Eutrophication of water bodies markedly reduces their recreational and economic use, which in turn compels those interested to pursuing prompt and effective restoration. This also applies to waters with a moderate pool of biogenic resources which, following temporarily increased nutrient alimentation from the catchment area may become eutrophic. The in-situ experiment tested the impact of chemical restoration on benthic macroalgae (Chara hispida L.) found in meso-eutrophic waters. Commonly used doses of iron sulphate were applied, defined as Low - 10.8 g Fe m and High - 21.6 g Fe m. It was presumed that the sudden shift of abiotic conditions of the environment will disturb growth and stoichiometry of the species. Analyses encompassed physicochemical water parameters (e.g. nutrient concentration, light availability), morphological features and elemental composition of the charophytes. Application of the coagulant caused shading of the plants and elimination of bioavailable phosphates from the water. This induced changes of behavioural ecology of the species, manifesting in elongation of the main axis and increase of the assimilation area (growth of branchlets and side-axes) as well as stoichiometric changes. It was found that shortage of phosphates in the water resulted in decreased phosphorus concentration in the thalli due to biological dilution. The increase of assimilation area and phosphorus dilution in the thalli have not been previously reported for charophytes. In this study, the qualitative transformation of the environment following application of iron as part of chemical lake restoration was evinced in significant ecological changes that adversely affected macrophytobenthos. The findings of the experiment can therefore be taken into account while planning restoration procedures, so as to preclude the risk of a negative trend of ecological changes.

摘要

水体富营养化显著降低了其休闲和经济用途,这反过来又迫使相关方寻求迅速有效的恢复。这同样适用于生物资源适度的水域,这些水域在受到集水区暂时增加的营养物质供应后可能会富营养化。现场实验测试了化学修复对中营养水域中底栖大型藻类(CharahispidaL.)的影响。通常使用的硫酸铁剂量为低剂量 10.8gFem 和高剂量 21.6gFe m。据推测,环境非生物条件的突然变化将扰乱物种的生长和化学计量。分析包括理化水参数(例如营养浓度、光照可用性)、Charophytes 的形态特征和元素组成。混凝剂的应用导致植物遮荫和水中可利用的磷酸盐被消除。这导致了物种行为生态学的变化,表现为主轴的伸长和同化面积的增加(小枝和侧轴的生长)以及化学计量的变化。研究发现,由于生物稀释,水中缺磷导致生物量中磷浓度降低。在 Charophytes 中,同化面积的增加和生物量中磷的稀释以前没有报道过。在这项研究中,作为化学湖泊修复的一部分,铁的应用导致环境发生定性转化,从而对大型底栖植物产生不利影响。因此,在规划修复程序时可以考虑实验结果,以避免生态变化出现负面趋势的风险。

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