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Lysing bloom-causing alga Phaeocystis globosa with microbial algicide: An efficient process that decreases the toxicity of algal exudates

机译:用微生物杀藻剂溶解引起藻华的藻类Phaeocystis globosa:降低藻类渗出液毒性的有效方法

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摘要

Algicidal microbes could effectively remove the harmful algae from the waters. In this study, we were concerned with the ecological influence of an algicide extracted from Streptomyces alboflavus RPS, which could completely lyse the Phaeocystis globosa cells within two days. In microcosms, 4 μg/mL of the microbial algicide could efficiently remove P. globosa cells without suppressing other aquatic organisms. Bioluminescent assays confirmed that the toxicity of microbial algicide at this concentration was negligible. Interestingly, the toxicity of P. globosa exudates was also significantly reduced after being treated with the algicide. Further experiments revealed that the microbial algicide could instantly increase the permeability of the plasma membrane and disturb the photosynthetic system, followed by the deformation of organelles, vacuolization and increasing oxidative stress. The pre-incubation of N-acetyl cysteine (NAC) verified that the rapid damages to the plasma membrane and photosynthetic system caused the algal death in the early phase, and the increasing oxidative stress killed the rest. The late accumulation and possible release of CAT also explained the decreasing toxicity of the algal culture. These results indicated that this microbial algicide has great potential in controlling the growth of P. globosa on site.
机译:杀藻微生物可以有效去除水中的有害藻类。在这项研究中,我们关注的是从链霉菌RPS中提取的杀藻剂的生态影响,该杀藻剂可以在两天内完全溶解球藻Phaeocystis globosa细胞。在微观世界中,4μg/ mL的微生物杀藻剂可以有效去除球状疟原虫细胞,而不会抑制其他水生生物。生物发光测定法证实了在此浓度下的微生物杀藻剂的毒性可忽略不计。有趣的是,在用杀藻剂处理后,球状疟原虫渗出液的毒性也大大降低了。进一步的实验表明,微生物杀藻剂可以立即增加质膜的渗透性并扰乱光合系统,继而使细胞器变形,空泡化和增加氧化应激。 N-乙酰基半胱氨酸(NAC)的预孵育证明,对质膜和光合系统的快速破坏导致藻类在早期死亡,而增加的氧化应激杀死了其余的藻类。 CAT的晚期积累和可能释放也解释了藻类培养物的毒性降低。这些结果表明,该微生物杀藻剂在控制现场球藻的生长方面具有巨大潜力。

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