聚苯乙烯纳米塑料和Cu2+对施氏假单胞菌的复合胁迫研究
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作者:
作者单位:

重庆大学 环境与生态学院,重庆 400044

作者简介:

孟韦乐(2000—),男,硕士研究生,主要从事水污染控制与处理方向研究,(E-mail)1029610401@qq.com。

通讯作者:

许小伟,男,博士后,主要从事水土污染治理方向研究,(E-mail) Xuxw@cqu.edu.cn。

中图分类号:

X703

基金项目:

国家博士后研究人员计划(GZC20233319);国家自然科学基金项目(42207022, 51878091)。


Combined stress effects of polystyrene nanoplastics and Cu2+ on Pseudomonas stutzeri
Author:
Affiliation:

College of Environment and Ecology, Chongqing University, Chongqing 400044, P. R. China

Fund Project:

Supported by the National Postdoctoral Research Program (GZC20233319), and National Natural Science Foundation of China (42207022, 51878091).

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    摘要:

    聚苯乙烯纳米塑料(PS-NPs)和Cu2+在废水中共存可产生复合胁迫效应。采用PS-NPs和Cu2+对好氧反硝化菌(施氏假单胞菌)进行胁迫,考察了菌株的生长、脱氮以及生化特性,通过转录组学阐明了胁迫机制。研究表明,在50 mg/L的PS-NPs胁迫下,菌株生长活性与对照相比提升了25.3%,脱氮活性提高,有关核糖体、TCA循环及ABC转运通路显著上调。在10 mg/L的Cu2+胁迫下,菌株生长活性与对照相比下降了83.2%,菌株受到显著抑制,细胞膜破损,有关核糖体、氮代谢及ABC转运通路代谢途径显著下调,与胞外聚合物(EPS)分泌、细胞膜合成有关基因丰度显著上调。复合胁迫下,Cu2+胁迫占据主导地位,但PS-NPs会刺激更多EPS产生,PS-NPs和EPS可以吸附部分Cu2+,减缓Cu2+对菌株的损伤。

    Abstract:

    The coexistence of polystyrene nanoplastics (PS-NPs) and Cu2+ in wastewater can induce compound stress effects on microorganisms. This study investigated the effects of PS-NPs and Cu2+ on the growth, nitrogen removal, and biochemical characteristics of the aerobic denitrifying bacterium Pseudomonas stutzeri, and further elucidated the stress mechanism through transcriptomics analysis. The results showed that under exposure to 50 mg/L PS-NPs, bacteria growth activity increased by 25.3% compared to the control, accompanied by enhanced nitrogen removal and significant upregulation of genes related to ribosome function, the tricarboxylic acid (TCA) cycle, and ABC transport pathways. In contrast, under 10 mg/L Cu2+ stress, bacterial growth activity decreased by 83.2% compared to the control, with severe inhibition, cell membrane damage, and marked downregulation of ribosomal, nitrogen metabolism, and ABC transport pathways. Genes related to extracellular polymeric substances (EPS) secretion and cell membrane synthesis were significantly upregulated. Under combined stress, Cu2+ exerted the dominant inhibitory effect; however, PS-NPs promoted EPS secretion, which, along with PS-NPs themselves, adsorbed part of the Cu2+ ions and mitigated their toxicity.

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孟韦乐,屈健伟,黄杰,杨蕤,许小伟,陈猷鹏,晏鹏,方芳,郭劲松.聚苯乙烯纳米塑料和Cu2+对施氏假单胞菌的复合胁迫研究[J].重庆大学学报,2025,48(12):20-32.

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  • 收稿日期:2024-03-04
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  • 在线发布日期: 2026-01-12
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