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Effect of micronutrients on algae in different regions of Taihu, a large, spatially diverse, hypereutrophic lake

机译:微量营养素对太湖不同区域藻类的影响,太湖是一个空间富营养化的大湖泊

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摘要

Eutrophication or excessive nutrient richness is an impairment of many freshwater ecosystems and a prominent cause of harmful algal blooms. It is generally accepted that nitrogen and phosphorus nutrients are the primary causative factor, however, for systems subject to large anthropogenic perturbation, this may no longer be true, and the role of micronutrients is often overlooked. Here we report a study on Lake Tai (Taihu), a large, spatially diverse and hypereutrophic lake in China. We performed small-scale mesocosm nutrient limitation bioassays using boron, iron, cobalt, copper, molybdenum, nitrogen and phosphorus on phytoplankton communities sampled from different locations in Taihu to test the relative effects of micronutrients on in situ algal assemblages. In addition to commonly-used methods of chemical and biological analysis (including algal phytoplankton counting), we used flow cytometry coupled with data-driven analysis to monitor changes to algal assemblages. We found statistically significant effects of limitation or co-limitation for boron, cobalt, copper and iron. For copper at one location chlorophyll-a was over four times higher for amendment with copper, nitrogen and phosphorous than for the latter two alone. Since copper is often proposed as amendment for the environmental management of harmful algal blooms, this result is significant. We have three primary conclusions: first, the strong effects for Cu that we report here are mutually consistent across chlorophyll-a results, count data, and results determined from a data-driven approach to flow cytometry. Given that we cannot rule out a role for a Fe-Cu homeostatic link in causing these effects, future research into MNs and how they interact with N, P, and other MNs should be pursued to explore new interventions for effective management of HABs. Second, in view of the stimulatory effect that Cu exhibited, management of HABs with Cu as an algal biocide may not always be advisable. Third, our approach to flow cytometry offers data confirming our results from chemical and biological analysis, however also holds promise for future development as a high-throughput tool for use in understanding changes in algal assemblages. The results from this study concur with a small and emerging body of literature suggesting that the potential role of micro-nutrients in eutrophication requires further consideration in environmental management. (C) 2018 Elsevier Ltd. All rights reserved.
机译:富营养化或营养过剩是许多淡水生态系统的损害,也是有害藻华的重要原因。人们普遍认为氮和磷的养分是主要的致病因素,但是,对于遭受较大的人为扰动的系统而言,这可能不再正确,微量营养素的作用通常被忽略。在这里,我们报告了对太湖(太湖)的研究,太湖是中国一个空间大小多样且营养丰富的湖泊。我们使用硼,铁,钴,铜,钼,氮和磷对太湖不同地区浮游植物群落进行了小规模的中观宇宙营养限度生物测定,以测试微量营养素对原位藻类组合的相对影响。除了常用的化学和生物学分析方法(包括藻类浮游植物计数)外,我们还使用流式细胞仪结合数据驱动的分析来监测藻类组合的变化。我们发现限制,共限制硼,钴,铜和铁的统计学显着影响。对于一个位置处的铜,叶绿素-a与铜,氮和磷的修饰比单独的后两者高四倍以上。由于经常提出将铜作为有害藻华的环境管理的修正案,因此这一结果意义重大。我们有三个主要结论:首先,我们在这里报告的对Cu的强效在叶绿素a结果,计数数据以及通过数据驱动的流式细胞术方法确定的结果之间是相互一致的。鉴于我们不能排除Fe-Cu稳态链接在引起这些影响方面的作用,因此应继续对MN进行研究,以及它们如何与N,P和其他MN相互作用,以探索有效管理HAB的新干预措施。第二,鉴于铜表现出的刺激作用,可能并不总是建议以铜作为藻类杀生物剂来管理HAB。第三,我们的流式细胞仪方法提供的数据证实了我们从化学和生物学分析中得到的结果,但是,也有望作为一种高通量工具用于未来发展,用于了解藻类组合的变化。这项研究的结果与少量新兴文献一致,表明微量营养素在富营养化中的潜在作用需要在环境管理中进一步考虑。 (C)2018 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Water Research》 |2019年第15期|500-514|共15页
  • 作者单位

    Univ Liverpool, Dept Environm Sci, Brownlow Hill, Liverpool L69 7ZX, Merseyside, England;

    Natl Inst Water & Atmospher Res, Freshwater Ecol Grp, Dunedin 9016, New Zealand;

    Xian Jiaotong Liverpool Univ, Dept Biol Sci, Suzhou 215123, Jiangsu, Peoples R China;

    Chinese Acad Sci, Nanjing Inst Geog & Limnol, State Key Lab Lake Sci & Environm, Taihu Lab Lake Ecosyst Res, Nanjing 210008, Jiangsu, Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Micronutrient limitation; Copper; Harmful algal bloom; Eutrophication; Lake; Flow cytometry;

    机译:微量元素限量;铜;有害藻华;富营养化;湖泊;流式细胞仪;

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