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首页> 外文期刊>Aquatic Toxicology >Effect of flavonoids isolated from Tridax procumbens on the growth and toxin production of Microcystis aeruginos
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Effect of flavonoids isolated from Tridax procumbens on the growth and toxin production of Microcystis aeruginos

机译:来自Tridax Provumbens的黄酮类化合物对微囊杆菌铜绿假单胞菌的生长和毒素生产

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The excessive proliferation of toxin producing cyanobacteria constitutes a significant health risk to the environment and humans. This is due to the contamination of potable water and accumulation of cyanotoxins in plant and animal tissues. As a means of controlling bloom forming cyanobacteria, secondary metabolites with pro-oxidative activities from plants are used to treat water bodies contaminated with cyanobacterial blooms and their associated toxins. The objective of the present study was to evaluate the mechanism of action of extract, fractions and isolated flavonoids of Tridax procumbens L. on Microcystis aeruginosa (Kutzing) Kutzing. by monitoring changes in growth, oxidative stress, antioxidant response, and cyanatoxin microcystins (MCs) production. The extract, fraction 3 and the isolated flavonoids significantly reduced the cell density of the cyanobacterium. Furthermore, the extract and fraction 3 increased the production of reactive oxygen species, induced lipid peroxidation, and altered antioxidant enzyme activities of M. aeruginosa. The total MCs content of the cyanobacterium was negatively affected by the presence of the extract, fractions and isolated flavonoids. The present study show that T. procumbens has secondary metabolites that are capable of interfering with the physiology and microcystins production of M. aeruginosa. These characteristics are promising for the control of this noxious cyanobacterium in aquatic ecosystems.
机译:产生毒素的毒素的过度增殖是对环境和人类的重大健康风险。这是由于植物和动物组织中的饮用水和氰霉素积累的污染。作为控制盛开形成蓝藻的手段,使用来自植物的促氧化活性的次级代谢物用于治疗用蓝藻绽放和它们相关毒素污染的水体。本研究的目的是评估提取物,级分和分离的类黄酮的作用机制,Tridax Procumbens L.在微囊杆菌铜绿假单胞菌(Kutzing)Kutzing上。通过监测生长,氧化应激,抗氧化反应和氰酸毒素微囊藻(MCS)生产的变化。提取物,级分3和分离的黄酮显着降低了蓝杆菌的细胞密度。此外,提取物和馏分3增加了活性氧物质的产生,诱导脂质过氧化和M.铜绿假单胞菌的抗氧化酶活性改变。通过提取物,级分和分离的黄酮类化合物的存在,蓝色细菌的总MCS含量受到负面影响。本研究表明,T.Vocumbens具有能够干扰M. Aeruginosa的生理和微囊藻的次生代谢物。这些特征对于对水生生态系统中这种有毒的蓝杆菌的控制很有希望。

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