首页> 外文期刊>Journal of Applied Phycology >Algistatic effect of a quinonamethide triterpene on Microcystis novacekii
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Algistatic effect of a quinonamethide triterpene on Microcystis novacekii

机译:喹喔啉三萜对微囊藻的抑制作用

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摘要

Cyanobacteria proliferation represents a problem to water treatment for human consumption supply. Species of the genus Microcystis, commonly found in continental waters, can bloom and produce microcystine and other toxic compounds associated to human and animal poisoning, depending on the nutrient levels present in the water. The use of natural products to control cyanobacteria blooms is promising since they are less harmful to the environment than compounds obtained by organic syntheses. Triterpenes, which are associated with several biological activities, have been isolated from species of the genus Maytenus (Celastraceae), commonly found in Cerrado regions of Brazil. Tingenone is a pentacyclic triterpene that has cytotoxic properties and induces growth inhibition in some microorganisms. In this study, the effects of tingenone isolated from Maytenus gonoclada at distinct concentrations (e.g., 50, 150, 500, 1,500, and 4,500 mu g L-1) on the growth rates of Microcystis novacekii was investigated. The algicide activity was verified using M. novacekii cultures growing in ASM1 culture medium at 23 A degrees C and continuous illumination for 96 h. Growth inhibition was monitored by light microscopy and optical density (OD680 nm). The median effective concentration associated to the M. novacekii inhibition growth induced by tingenone was 12.2 mu g L-1. The result indicates that tingenone has algicide effect and can be potentially applied in water management for public supply, replacing synthetic algicides.
机译:蓝细菌的增殖代表了用于人类消费供应的水处理的问题。微囊藻属的物种通常在大陆水域中发现,它们会开花并产生微囊藻毒素和其他与人和动物中毒有关的有毒化合物,具体取决于水中的营养水平。使用天然产物来控制蓝细菌的开花是有希望的,因为与通过有机合成获得的化合物相比,它们对环境的危害较小。三萜烯与几种生物活性有关,已经从通常在巴西塞拉多地区发现的Maytenus(Celastraceae)属物种中分离出来。丁酮是一种五环三萜,具有细胞毒性,可诱导某些微生物的生长抑制。在该研究中,研究了从不同浓度的美登氏球果(Maytenus gonoclada)中分离的丁烯酮(例如50、150、500、1,500和4,500μg L-1)对Novacekii微囊藻的生长速率的影响。使用生长在ASM1培养基中的Novacekii培养物在23 A摄氏度下连续照明96小时来验证杀藻活性。通过光学显微镜和光密度(OD680nm)监测生长抑制。与丁烯酮诱导的诺华克雷伯氏菌抑制生长相关的中位有效浓度为12.2μgL-1。结果表明,丁烯酮具有杀藻作用,可潜在地用于公共供应的水管理中,替代合成杀藻剂。

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