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How do toxic metals affect harmful cyanobacteria? An integrative study with a toxigenic strain of Microcystis aeruginosa exposed to nickel stress

机译:有毒金属如何影响有害的蓝细菌?暴露于镍胁迫下的铜绿微囊藻产毒菌株的综合研究

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Nickel (Ni) is an essential metal for some organisms, but also a common toxic pollutant released into the water. Toxicity of Ni has not been completely established for cyanobacteria; for this reason, we evaluated the effect of sub-inhibitory Ni concentrations on a toxigenic strain of Microcystis aeruginosa and on microcystins production. Population growth, photosynthetic pigments concentration, biomarkers, including antioxidant enzymes (catalase [CAT], glutathione peroxidase [GPx], and superoxide dismutase [SOD]), as well as macromolecules (proteins, carbohydrates and lipids) were quantified; SEM and TEM observations were also performed. Population growth was affected starting at 3 mu g L-1, and at 24 mu g L-1 growth was completely inhibited; the 96-h Ni2+ IC50 was 3.7 mu g L-1. Ni exposure increased pigments concentration, augmented all the macromolecules, and increased activities of CAT and GPx; alterations on the internal cell structure were also observed. The integrated biomarker response revealed that Ni2+ augmented the antioxidant response and the macromolecules content. Ni stress also increased microcystins production. M. aeruginosa was affected by Ni at very low concentrations, even lower than those established as safe limit to protect aquatic biota. Aside from the toxic effects produced in this cyanobacterium, stimulation to produce toxins could potentiate the environmental risks associated with water pollution and eutrophication. (C) 2016 Elsevier Inc. All rights reserved.
机译:镍(Ni)是某些生物的必需金属,也是释放到水中的常见有毒污染物。 Ni对蓝细菌的毒性尚未完全确定。因此,我们评估了亚抑制性镍浓度对铜绿微囊藻的产毒菌株和微囊藻毒素产量的影响。对种群增长,光合色素浓度,包括抗氧化酶(过氧化氢酶[CAT],谷胱甘肽过氧化物酶[GPx]和超氧化物歧化酶[SOD])在内的生物标记物以及大分子(蛋白质,碳水化合物和脂质)进行了定量;还进行了SEM和TEM观察。从3微克L-1开始,种群生长受到影响,而在24微克L-1开始,种群的生长被完全抑制。 96小时Ni2 + IC50为3.7微克L-1。镍暴露增加了颜料的浓度,增加了所有大分子,并增加了CAT和GPx的活性。还观察到内部细胞结构的改变。整合的生物标记反应表明,Ni2 +增强了抗氧化反应和大分子含量。镍胁迫还增加了微囊藻毒素的产生。铜绿假单胞菌受极低浓度的镍影响,甚至低于为保护水生生物而设定的安全限值的镍。除了这种蓝细菌产生的毒性作用之外,刺激产生毒素还可以增强与水污染和富营养化有关的环境风险。 (C)2016 Elsevier Inc.保留所有权利。

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