首页> 外文期刊>Journal of Applied Phycology >Programmed cell death in the cyanobacterium Microcystis aeruginosa induced by allelopathic effect of submerged macrophyte Myriophyllum spicatum in co-culture system
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Programmed cell death in the cyanobacterium Microcystis aeruginosa induced by allelopathic effect of submerged macrophyte Myriophyllum spicatum in co-culture system

机译:共培养系统中沉没的大型植物Myriophyllum spicatum的化感作用诱导的铜绿微囊藻蓝藻程序性死亡

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This investigation demonstrates that programmed cell death (PCD) in a cyanobacterium, Microcystis aeruginosa, resulting from allelopathic stress induced by a submerged macrophyte, Myriophyllum spicatum, in a co-culture system. The hallmarks of PCD, caspase-3-like protease activity, DNA fragmentation, and destruction of cell ultrastructure, as well as intracellular PCD signaling radicals, reactive oxygen species (ROS), and nitric oxide (NO), were measured in M. aeruginosa cells co-cultured with M. spicatum for 7 days. The results showed a dose-response relationship between M. spicatum biomass and M. aeruginosa mortality. A caspase-3-like protease was activated and elevated from day 3. Thylakoid disintegration, cytoplasmic vacuolation, and fuzzy nuclear zone were observed by transmission electron microscopy, and distinct DNA fragmentation was detected in M. aeruginosa cells at a M. spicatum biomass of 6.0 g fresh weight (FW) L-1 during the 7 days. Allelochemicals of total phenolic compounds (TPCs) were determined in co-culture water, and the concentration increased with increasing of M. spicatum biomass and co-culture time. Compared with the level of ROS production in the control group, a significant overproduction of ROS was detected in M. aeruginosa cells in the treatment group, and this was positively correlated with TPC concentration. Furthermore, the level of intracellular NO increased with the percent mortality of M. aeruginosa. The results indicated that a PCD pathway was induced in the cyanobacterium M. aeruginosa when co-cultured with the submerged macrophyte M. spicatum.
机译:这项研究表明,在共培养系统中,蓝藻微囊藻的程序性细胞死亡(PCD)是由淹没的大型植物Myriophyllum spicatum诱导的化感胁迫导致的。在铜绿假单胞菌中测量了PCD,caspase-3样蛋白酶活性,DNA片段化和细胞超微结构破坏以及细胞内PCD信号自由基,活性氧(ROS)和一氧化氮(NO)的标志。细胞与角叉菜共培养7天。结果显示了辣根分枝杆菌生物量和铜绿分枝杆菌死亡率之间的剂量反应关系。从第3天起,激活并升高了一个胱天蛋白酶3样蛋白酶。通过透射电镜观察到类囊体解体,胞质空泡化和模糊核区,并且在绿脓杆菌细胞中,绿脓杆菌的生物量检测到明显的DNA片段化。在7天内,新重(FW)L-1为6.0克。在共培养水中测定了总酚类化合物(TPCs)的化感化学物质,其浓度随着鼠尾草的生物量和共培养时间的增加而增加。与对照组中ROS产生的水平相比,在治疗组中铜绿假单胞菌细胞中检测到了显着过量的ROS,这与TPC浓度呈正相关。此外,细胞内NO的水平随着铜绿假单胞菌的死亡率百分比而增加。结果表明,当与淹没的大型植物M. spicatum共培养时,铜绿假单胞菌中诱导了PCD途径。

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