Different responses of Chlorella vulgaris to silver nanoparticles and silver ions under modulation of nitric oxide

被引:0
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作者
Gaoxiang Zhou
Limei Xu
Haoyu Wang
Aoxue Sun
Yong Wang
Xiaochen Li
Ruixue Jiang
机构
[1] College of Water Conservancy and Civil Engineering,
[2] Shandong Agricultural University,undefined
[3] State Key Laboratory of Crop Biology,undefined
[4] College of Life Sciences,undefined
[5] Shandong Agricultural University,undefined
关键词
Silver nanoparticles; Nitric oxide; Oxidative stress; Internalization;
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中图分类号
学科分类号
摘要
Silver nanoparticles (Ag-NPs) are widely used in daily life because of their antibacterial properties. A fraction of Ag-NPs are released into the ecosystem during their production and utilization. The toxicity of Ag-NPs has been reported. However, it is still disputed whether the toxicity is mainly due to the released silver ions (Ag+). In addition, few studies have reported the response of algae to metal nanoparticles under modulation of nitric oxide (NO). In this study, Chlorella vulgaris (C. vulgaris) was used as a model organism to study the toxic effects of Ag-NPs and Ag+ released from Ag-NPs on algae under the modulation of NO. The results showed that the biomass inhibition rate of Ag-NPs (44.84%) to C. vulgaris was higher than that of Ag+ (7.84%). Compared with Ag+, Ag-NPs induced more severe damage to photosynthetic pigments, photosynthetic system II (PSII) performance, and lipid peroxidation. More serious damage to cell permeability led to higher internalization of Ag under Ag-NPs stress. Application of exogenous NO reduced the inhibition ratio of photosynthetic pigments and chlorophyll autofluorescence. Further, NO reduced the MDA levels by scavenging reactive oxygen species induced by Ag-NPs. NO modulated the secretion of extracellular polymers and hampered the internalization of Ag. All these results showed that NO alleviates the toxicity of Ag-NPs to C. vulgaris. However, NO did not improve the toxic effects of Ag+. Our results provide new insights into the toxicity mechanism of Ag-NPs to algae modulated by the signal molecule NO.
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页码:64536 / 64546
页数:10
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