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The algicidal mechanism of prodigiosin from Hahella sp. KA22 against Microcystis aeruginosa

机译:Hahella SP的ProTigiosin抗原机制。 KA22对抗微囊杆菌铜绿假单胞菌

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摘要

Abstract In recent years, Microcystis aeruginosa blooms have occurred throughout the world, causing huge economic losses and destroying aquatic ecosystems. It is necessary to develop effective and ecofriendly methods to control M. aeruginosa blooms. Here, we report a high algicidal activity of prodigiosin (PG) against M. aeruginosa as well as the algicidal mechanism. PG showed high algicidal activity against M. aeruginosa, with a 50% lethal dose (LD50) of 5.87 μg/mL in 72 h. A combination of methods, including propidium iodide and Annexin V-fluorescein staining assays and light and electron microscopy indicated the existence of two modes of cell death with features similar to those in eukaryotic programmed cell death: necrotic-like and apoptotic-like. Biochemical and physiological analyses showed that PG generates reactive oxygen species (ROS), which induce lipid peroxidation, damage the membrane system and destroy the function of the photosystem. A proteomics analysis revealed that many proteins were differentially expressed in response to PG stress and that most of these proteins were involved in important metabolic processes, which may trigger necrotic-like or apoptotic-like cell death. The present study sheds light on the multiple toxicity mechanisms of PG on M. aeruginosa and its potential for controlling the occurrence of M. aeruginosa blooms in lakes.
机译:摘要近年来,全世界都发生了微阴压铜绿假单胞菌绽放,造成巨大的经济损失和摧毁水生生态系统。有必要开发有效和生态友好的方法来控制M. Aeruginosa Blooms。在此,我们报告了针对铜绿假单胞菌的Prodigiosin(PG)的高杀虫活性以及抗灰原机制。 PG显示对铜绿假单胞菌的高抗藻酸活性,在72小时内为50%致命剂量(LD50)为5.87μg/ ml。方法的组合,包括碘化丙啶和膜蛋白V-荧光素染色测定和光和电子显微镜表明,存在两种细胞死亡模式,其特征类似于真核编程细胞死亡的特征:坏死性和凋亡的样子。生物化学和生理学分析表明,PG产生反应性氧物质(ROS),其诱导脂质过氧化,损伤膜系统并破坏光系统的功能。蛋白质组学分析显示,响应于PG胁迫,许多蛋白质差异表达,并且这些蛋白质中的大多数涉及重要的代谢过程,这可能引发坏死状或凋亡的细胞死亡。本研究揭示了PG对M.铜绿假单胞菌的多种毒性机制及其控制湖泊中M. Aeruginosa绽放的潜力。

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