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Nanoplastics Promote Microcystin Synthesis and Release from Cyanobacterial Microcystis aeruginosa

机译:纳米塑料促进微囊藻毒素的合成和铜绿微囊藻的释放。

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Although the fate of nanoplastics (<100 nm) in freshwater systems is increasingly well studied, much less is known about its potential threats to cyanobacterial blooms, the ultimate phenomenon of eutrophication occurrence worldwide. Previous studies have evaluated the consequences of nanoplastics increasing the membrane permeability of microbes, however, there is no direct evidence for interactions between nanoplastics and microcystin; intracellular hepatotoxins are produced by some genera of cyanobacteria. Here, we show that the ammo-modified polystyrene nanoplastics (PS-NH_2) promote microcystin synthesis and release from Microcystis aeruginosa, a dominant species causing cyanobacterial blooms, even without the change of coloration. We demonstrate that PS-NH_2 inhibits photosystem Ⅱ efficiency, reduces organic substance synthesis, and induces oxidative stress, enhancing the synthesis of microcystin. Furthermore, PS-NH_2 promotes the extracellular release of microcystin from M. aeruginosa via transporter protein upregulation and impaired cell membrane integrity. Our findings propose that the presence of nanoplastics in freshwater ecosystems might enhance the threat of eutrophication to aquatic ecology and human health.
机译:尽管越来越多地研究淡水系统中纳米塑料的命运(<100 nm),但对其对蓝藻水华的潜在威胁知之甚少,蓝藻水华是世界范围内富营养化的最终现象。先前的研究已经评估了纳米塑料增加微生物膜渗透性的后果,但是,没有直接证据表明纳米塑料与微囊藻毒素之间存在相互作用。细胞内肝毒素是由蓝细菌的某些属产生的。在这里,我们表明弹药改性的聚苯乙烯纳米塑料(PS-NH_2)促进微囊藻毒素的合成和从铜绿微囊藻的释放,铜绿微囊藻是导致蓝藻水华的主要物种,即使没有改变颜色。我们证明PS-NH_2抑制光系统Ⅱ的效率,减少有机物的合成,并诱导氧化应激,增强微囊藻毒素的合成。此外,PS-NH_2通过转运蛋白上调和细胞膜完整性受损,促进铜绿假单胞菌从细胞外释放微囊藻毒素。我们的发现表明,淡水生态系统中纳米塑料的存在可能会增加富营养化对水生生态和人类健康的威胁。

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