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Occurrence of copper resistant mutants in the toxic cyanobacteria Microcystis aeruginosa: characterisation and future implications in the use of copper sulphate as algaecide

机译:在有毒的蓝细菌铜绿微囊藻中发生铜抗性突变体:表征和使用硫酸铜作为除藻剂的未来意义

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Freshwater toxic cyanobacteria are an increasing problem to human and animal health. Control of cyanobacteria in water supply reservoirs involves the use of algaecides, such as copper sulphate, usually in a repetitive way. Repercussions of recurrent algaecide treatments on cyanobacteria population dynamics remain still unknown. We studied the adaptation of cyanobacteria to lethal doses of copper sulphate by using Microcystis aeruginosa as an experimental model." A fluctuation analysis demonstrated that copper-resistant cells arise by spontaneous mutations that occur randomly prior to exposition to copper sulphate. The rate of spontaneous mutation from copper sensitivity to resistance was 1.76 x 10~(-6) mutants per cell division. Resistant mutants exhibited a diminished fitness in the absence of copper sulphate, but only these variants were able to grow at Cu~(2+) concentrations higher than 5.8 uM. In addition, copper-resistant cells were significantly smaller than wild-type ones. Warnings on the long-term consequences of repetitive algaecide treatments in water supplies are suggested.
机译:淡水有毒的蓝细菌是对人类和动物健康日益严重的问题。控制供水水库中的蓝细菌通常以重复方式使用除藻剂,例如硫酸铜。反复使用除藻剂对蓝细菌种群动态的影响仍然未知。我们通过使用铜绿微囊藻为实验模型研究了蓝细菌对致死剂量硫酸铜的适应性。”波动分析表明,铜耐药性细胞是由暴露于硫酸铜之前随机发生的自发突变产生的。自发突变率铜对抗性的敏感性是每细胞分裂1.76 x 10〜(-6)个突变体,在没有硫酸铜的情况下,抗性突变体的适应性降低,但是只有这些变异体能够以高于Cu〜(2+)的浓度生长5.8 uM。此外,铜抗性细胞明显小于野生型细胞,建议对供水中重复使用除藻剂处理产生长期后果。

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