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Effects of sublethal doses of silver nanoparticles on Bacillus subtilis planktonic and sessile cells

机译:亚麻纳米粒子对枯草芽孢杆菌和无梗塞细胞的亚麻瘤瘤颗粒的影响

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Aims: Due to their antimicrobial activity, silver nanoparticles (Ag-NPs) are being increasingly used in a number of industrial products. The accumulation of Ag-NPs in the soil might affect plant growth-promoting rhizobacteria and, in turn, the plants. We describe the effects of Ag-NPs on the soil bacteria Azotobacter vinelandii and Bacillus subtilis. Methods and Results: In growth-inhibition studies, A. vinelandii showed extreme sensitivity to Ag-NPs, compared to B. subtilis. We investigated the effects of Ag-NPs at subinhibitory concentrations, both on planktonic and sessile B. subtilis cells. As determined by 2,7-dichlorofluorescein-diacetate assays, Ag-NPs increase the formation of reactive oxygen species in planktonic cells, but not in sessile cells, suggesting the activation of scavenging systems in biofilms. Consistently, proteomic analysis in B. subtilis Ag-NPs-treated biofilms showed increased production of proteins related to quorum sensing and involved in stress responses and redox sensing. Extracellular polysaccharides production and inorganic phosphate solubilization were also increased, possibly as part of a coordinated response to stress. Conclusions: At low concentrations, Ag-NPs killed A. vinelandii and affected cellular processes in planktonic and sessile B. subtilis cells. Significance and Impact of the Study: Re-direction of gene expression, linked to selective toxicity, suggests a strong impact of Ag-NPs on soil bacterial communities.
机译:目的:由于它们的抗微生物活性,银纳米粒子(AG-NPS)越来越多地用于许多工业产品。土壤中Ag-NP的积累可能影响植物生长促进的根瘤菌,而且又是植物。我们描述了AG-NPS对土壤细菌厌氧杆菌和枯草芽孢杆菌的影响。方法和结果:在生长抑制研究中,与枯草芽孢杆菌相比,A.Vinelandii对Ag-NPS表现出极度敏感性。我们调查了AG-NPS在植物和无柄B.枯草芽孢杆菌细胞上的水下浓度的影响。由2,7-二氯氟乙胺素 - 二乙酸酯测定法测定,Ag-NPS增加了浮游细胞中反应性氧物种的形成,但不在术中,表明生物膜中清除系统的活化。始终如一地,B.枯草芽孢杆菌AG-NPS处理的生物膜中的蛋白质组学分析显示出增加与Quorum感测相关的蛋白质,并参与应力反应和氧化还原感测。细胞外多糖的产生和无机磷酸盐溶解也增加,可能是对应激的协调反应的一部分。结论:在低浓度下,AG-NPS丧生A. Vinelandii并影响浮游生物和沉肠B.枯草芽孢杆菌细胞中的细胞过程。研究的意义和影响:与选择性毒性相关的基因表达的重新方向,表明AG-NP对土壤细菌群落的强烈影响。

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