Seasonality of cyanobacteria and eukaryotes in Lake Geneva and the impacts of cyanotoxins on growth of the model ciliate Tetrahymena pyriformis

IF 4.3 2区 环境科学与生态学 Q1 MARINE & FRESHWATER BIOLOGY Aquatic Toxicology Pub Date : 2025-02-01 Epub Date: 2025-01-25 DOI:10.1016/j.aquatox.2025.107262
Niveen Ismail , Paul Seguin , Lola Pricam , Elisabeth M.L. Janssen , Tamar Kohn , Bas W. Ibelings , Anna Carratalà
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Abstract

Toxic cyanobacteria are likely to be favored by global warming and other human impacts, posing significant threats to aquatic ecosystems. While cyanobacterial blooms in eutrophic lakes are widely investigated, the dynamics of cyanobacteria and the effects of their toxins and bioactive metabolites on the plankton communities in mesotrophic and oligotrophic lakes are less well understood. Here we investigated seasonal dynamics of cyanobacteria, eukaryotic algae and cyanotoxins in oligo-mesotrophic Lake Geneva—the largest and deepest lake in western Europe. High-throughput sequencing of the 16S rRNA genes in 143 samples along a water column revealed that Lake Geneva hosts diverse, co-dominant cyanobacterial genera, including Planktothrix, Cyanobium, Pseudanabaena, and Aphanizomenon. The abundance of the mcyA gene marker for microcystin production was highly correlated with total cyanobacteria abundance, obtained from qPCR of the 16S rRNA genes. Targeted LC-HRMS/MS analysis demonstrated peak concentrations of cyanotoxins in September and December 2021 at the deep chlorophyll-a maximum layer, reaching up to 1474 ng/l for anabaenopeptins and 144 ng/l for microcystins. The toxin peaks did not correlate with the abundance or variations in the cyanobacteria or eukaryote community, but they were correlated in time with seasonal lows in the abundances of ciliates (18S rRNA analysis). Laboratory exposure tests demonstrated that growth of the model ciliate Tetrahymena pyriformis was inhibited by Microcystin-RR and Anabaenopeptin A at environmentally relevant concentrations in the ng/l-range, in natural lake water, synthetic freshwater, and growth media spiked with the cyanotoxins. Our findings suggest that even low concentrations (in the ng/l-range) of microcystins and anabaenopeptins, reduce growth of ciliates such as T. pyriformis and can be expected to have wider impacts on the eukaryote communities.
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日内瓦湖蓝藻和真核生物的季节性及蓝藻毒素对模式纤毛虫梨形四膜虫生长的影响
有毒的蓝藻可能会受到全球变暖和其他人类影响的青睐,对水生生态系统构成重大威胁。虽然富营养化湖泊中的蓝藻大量繁殖被广泛研究,但蓝藻的动态及其毒素和生物活性代谢物对中营养化和贫营养化湖泊浮游生物群落的影响尚不清楚。在这里,我们研究了淡水湖日内瓦-西欧最大和最深的湖泊蓝藻,真核藻类和蓝藻毒素的季节性动态。对143个水柱样本的16S rRNA基因进行高通量测序显示,日内内湖拥有多种共同优势的蓝藻属,包括浮游thrix, Cyanobium, Pseudanabaena和aphanizomena。通过对16S rRNA基因的qPCR分析,发现微囊藻毒素基因标记mcyA的丰度与蓝藻总丰度高度相关。目标LC-HRMS/MS分析显示,蓝藻毒素在2021年9月和12月在叶绿素-a最大层深层浓度达到峰值,anabaenopeptin达到1474 ng/l,微囊藻毒素达到144 ng/l。毒素峰值与蓝藻或真核生物群落的丰度或变化不相关,但与纤毛虫丰度的季节性低点相关(18S rRNA分析)。实验室暴露试验表明,在环境相关浓度(ng/l)范围内,在天然湖水、合成淡水和含有蓝藻毒素的生长介质中,微囊藻毒素- rr和Anabaenopeptin A抑制了模式纤毛虫梨形四膜虫的生长。我们的研究结果表明,即使是低浓度(在ng/l范围内)的微囊藻毒素和anabaenopeptin,也会减少像梨形绦虫这样的纤毛虫的生长,并可能对真核生物群落产生更广泛的影响。
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来源期刊
Aquatic Toxicology
Aquatic Toxicology 环境科学-毒理学
CiteScore
7.10
自引率
4.40%
发文量
250
审稿时长
56 days
期刊介绍: Aquatic Toxicology publishes significant contributions that increase the understanding of the impact of harmful substances (including natural and synthetic chemicals) on aquatic organisms and ecosystems. Aquatic Toxicology considers both laboratory and field studies with a focus on marine/ freshwater environments. We strive to attract high quality original scientific papers, critical reviews and expert opinion papers in the following areas: Effects of harmful substances on molecular, cellular, sub-organismal, organismal, population, community, and ecosystem level; Toxic Mechanisms; Genetic disturbances, transgenerational effects, behavioral and adaptive responses; Impacts of harmful substances on structure, function of and services provided by aquatic ecosystems; Mixture toxicity assessment; Statistical approaches to predict exposure to and hazards of contaminants The journal also considers manuscripts in other areas, such as the development of innovative concepts, approaches, and methodologies, which promote the wider application of toxicological datasets to the protection of aquatic environments and inform ecological risk assessments and decision making by relevant authorities.
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