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Toxicity and disruption of quorum sensing in Aliivibrio fisheri by environmental chemicals: Impacts of selected contaminants and microplastics

机译:环境化学物质对鱼腥藻的毒性和群体感应破坏:选定污染物和微塑料的影响

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摘要

The purpose of this study was to examine the effects of dissolved and particulate compounds on quorum sensing in the marine luminescent bacterium Aliivibrio fisheri. Bacteria were exposed to increasing concentrations of CuSO4 (Cu2+), gadolinium chloride (Gd3+), 20-nm silver nanoparticles (nanoAg) and 1-3 μm microplastic polyethylene beads for 250 min. During this period, luminescence measurements were taken at 5-min intervals. Toxicity was first examined by measuring luminescence output at 5-min and 30-min incubation time. Based on the effective concentration that decreases luminescence by 20% (EC20), the compounds were toxic at the following concentrations in decreasing toxicity: Cu2+ (3.2 mg/L) < nanoAg (3.4 mg/L, reported) < Gd3+ (34 mg/L) < microplastics (2.6 g/L). The data revealed that luminescence changed non-linearly over time. In control bacteria, luminescence changed at eight specific major frequencies between 0.04 and 0.27 cycle/min after Fourier transformation of time-dependent luminescence data. The addition of dissolved Cu2+ and Gd3+ eliminated the amplitude changes at these frequencies in a concentration-dependent manner, indicating loss of quorum sensing between bacteria at concentrations below EC20. In the presence of nanoAg and microplastic beads, the decreases in amplitudes were modest but compressed the luminescence profiles, with shorter frequencies appearing at concentrations well below EC20. Thus, loss of communication between bacteria occurs at non-toxic concentrations. In addition, with exposure to a mixture of the above compounds at concentrations that do not produce effects for Gd3+, nanoAg and microplastics, Cu2+ toxicity was significantly enhanced, suggesting synergy. This study revealed for the first time that small microplastic particles and nanoparticles can disrupt quorum sensing in marine bacteria.
机译:这项研究的目的是检查溶解和颗粒状化合物对海洋发光细菌Aliivibrio fisheri中群体感应的影响。细菌暴露于浓度不断增加的CuSO4(Cu 2 + ),氯化g(Gd 3 + ),20-nm银纳米颗粒(nanoAg)和1-3μm微塑料中聚乙烯珠250分钟在此期间,每隔5分钟进行一次发光测量。首先通过在5分钟和30分钟的孵育时间测量发光输出来检查毒性。根据将发光降低20%的有效浓度(EC20),化合物在以下浓度下具有降低毒性的毒性:Cu 2 + (3.2 mg / L) 3 + (34 mg / L)<微塑料(2.6 g / L)。数据表明,发光随时间呈非线性变化。在对照细菌中,在随时间变化的发光数据进行傅立叶变换后,发光在0.04和0.27个循环/分钟之间的八个特定主频率上变化。添加溶解的Cu 2 + 和Gd 3 + 以浓度依赖性消除了这些频率下的振幅变化,表明浓度低于EC20的细菌之间的群体感应丧失。 。在存在纳米银和微塑料珠的情况下,振幅的下降是适度的,但是压缩了发光曲线,在远低于EC20的浓度下出现了较短的频率。因此,细菌之间的通讯丧失是在无毒浓度下发生的。此外,暴露于上述化合物的混合物中其浓度不会对Gd 3 + ,nanoAg和微塑料产生影响,Cu 2 + 的毒性显着增强,暗示协同作用。这项研究首次揭示了微小的塑料微粒和纳米颗粒会破坏海洋细菌的群体感应。

著录项

  • 期刊名称 Journal of Xenobiotics
  • 作者

    François Gagné;

  • 作者单位
  • 年(卷),期 2017(7),1
  • 年度 2017
  • 页码 7101
  • 总页数 6
  • 原文格式 PDF
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