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Bioactivity of Benthic and Picoplanktonic Estuarine Cyanobacteria on Growth of Photoautotrophs: Inhibition versus Stimulation

机译:底栖和笔浮游性河口蓝细菌对光养植物生长的生物活性:抑制与刺激。

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摘要

Understanding potential biochemical interactions and effects among cyanobacteria and other organisms is one of the main keys to a better knowledge of microbial population structuring and dynamics. In this study, the effects of cyanobacteria from benthos and plankton of estuaries on other cyanobacteria and green algae growth were evaluated. To understand how the estuarine cyanobacteria might influence the dynamics of phytoplankton, experiments were carried out with the freshwater species Microcystis aeruginosa and Chlorella sp., and the marine Synechocystis salina and Nannochloropsis sp. exposed to aqueous and organic (70% methanol) crude extracts of cyanobacteria for 96 h. The most pronounced effect observed was the growth stimulation. Growth inhibition was also observed for S. salina and M. aeruginosa target-species at the highest and lowest concentrations of cyanobacterial extracts. The methanolic crude extract of Phormidium cf. chalybeum LEGE06078 was effective against S. salina growth in a concentration-dependent manner after 96 h-exposure. All of the cyanobacterial isolates showed some bioactivity on the target-species growth, i.e., inhibitory or stimulating effects. These results indicate that the analyzed cyanobacterial isolates can potentially contribute to blooms’ proliferation of other cyanobacteria and to the abnormal growth of green algae disturbing the dynamic of estuarine phytoplankton communities. Since estuaries are transitional ecosystems, the benthic and picoplanktonic estuarine cyanobacteria can change both freshwater and marine phytoplankton succession, competition and bloom formation. Furthermore, a potential biotechnological application of these isolates as a tool to control cyanobacteria and microalgae proliferation can be feasible. This work is the first on the subject of growth responses of photoautotrophs to cyanobacteria from Atlantic estuarine environments.
机译:了解蓝细菌和其他生物之间潜在的生化相互作用及其影响是更好地了解微生物种群结构和动力学的主要关键之一。在这项研究中,评估了底栖生物和河口浮游生物中的蓝细菌对其他蓝细菌和绿藻生长的影响。为了了解河口蓝细菌如何影响浮游植物的动力学,对淡水铜绿微囊藻和小球藻,海洋Synechocystis salina和Nannochloropsis sp进行了实验。暴露于蓝细菌的含水和有机(70%甲醇)粗提物中96小时。观察到的最明显的作用是生长刺激。在最高和最低浓度的蓝细菌提取物中,也观察到了盐藻和铜绿假单胞菌靶标物种的生长抑制。 or的甲醇粗提物。暴露96 h后,chalybeum LEGE06078以浓度依赖的方式有效地对抗盐藻的生长。所有蓝细菌分离株对靶标物种的生长均显示出一定的生物活性,即抑制或刺激作用。这些结果表明,所分析的蓝细菌分离物可能会导致其他蓝细菌的水华繁殖和绿藻的异常生长,从而干扰河口浮游植物群落的动态。由于河口是过渡生态系统,因此底栖和微浮游河口蓝细菌可以改变淡水和海洋浮游植物的演替,竞争和水华形成。此外,将这些分离物作为控制蓝细菌和微藻繁殖的工具的潜在生物技术应用可能是可行的。这项工作是第一个关于光自养生物对大西洋河口环境中蓝细菌生长反应的主题。

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