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Synergistic algicidal effect and mechanism of two diketopiperazines produced by Chryseobacterium sp. strain GLY-1106 on the harmful bloom-forming Microcystis aeruginosa

机译:幽门螺杆菌(Chryseobacterium sp)产生的两种二酮哌嗪的协同杀菌作用和机理。菌株GLY-1106对有害的形成花粉的铜绿微囊藻

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A potent algicidal bacterium isolated from Lake Taihu, Chryseobacterium sp. strain GLY-1106, produces two algicidal compounds: 1106-A (cyclo(4-OH-Pro-Leu)) and 1106-B (cyclo(Pro-Leu)). Both diketopiperazines showed strong algicidal activities against Microcystis aeruginosa , the dominant bloom-forming cyanobacterium in Lake Taihu. Interestingly, these two algicidal compounds functioned synergistically. Compared with individual treatment, combined treatment with cyclo(4-OH-Pro-Leu) and cyclo(Pro-Leu) significantly enhanced algicidal activity, accelerated the increase in intracellular reactive oxygen species (ROS) levels in M . aeruginosa , and further decreased the activities of antioxidases, effective quantum yield and maximal electron transport rate of M . aeruginosa . The results also showed that the algicidal characteristics of cyclo(4-OH-Pro-Leu) are distinct from those of cyclo(Pro-Leu). Cyclo(4-OH-Pro-Leu) mainly interrupted the flux of electron transport in the cyanobacterial photosynthetic system, whereas cyclo(Pro-Leu) mainly inhibited the activity of cyanobacterial intracellular antioxidases. A possible algicidal mechanism for the synergism between cyclo(4-OH-Pro-Leu) and cyclo(Pro-Leu) is proposed, which is in accordance with their distinct algicidal characteristics in individual and combined treatment. These findings suggest that synergism between algicidal compounds might be used as an effective strategy for the future control of Microcystis blooms.
机译:分离自太湖(Chryseobacterium sp。)的有效杀藻细菌。菌株GLY-1106产生两种杀藻化合物:1106-A(环(4-OH-Pro-Leu))和1106-B(环(Pro-Leu))。两种二酮哌嗪均对铜绿微囊藻(强烈的形成花蓝藻的蓝细菌)具有很强的杀藻活性。有趣的是,这两种杀藻化合物具有协同作用。与单独治疗相比,环(4-OH-Pro-Leu)和环(Pro-Leu)联合治疗显着增强了杀藻活性,加速了M.的细胞内活性氧(ROS)水平的增加。铜绿假单胞菌,并进一步降低了抗氧化酶的活性,有效量子产率和最大电子传输速率。铜绿。结果还表明,环(4-OH-Pro-Leu)的杀藻特性不同于环(Pro-Leu)。环(4-OH-Pro-Leu)主要中断了蓝细菌光合系统中电子传递的通量,而环(Pro-Leu)主要抑制了蓝细菌细胞内抗氧化酶的活性。提出了环(4-OH-Pro-Leu)和环(Pro-Leu)之间协同作用的可能的杀藻机制,这是由于它们在单独和联合处理中的独特杀藻特性。这些发现表明,杀藻化合物之间的协同作用可以用作将来控制微囊藻开花的有效策略。

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