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植物物种组成通过增强生长、抗氧化防御系统和解毒作用来减轻双酚 A 的毒理学效应。

Plant species compositions alleviate toxicological effects of bisphenol A by enhancing growth, antioxidant defense system, and detoxification.

机构信息

College of Environmental Science and Engineering, Ocean University of China, Qingdao, 266100, China.

出版信息

Environ Sci Pollut Res Int. 2022 Sep;29(43):65755-65770. doi: 10.1007/s11356-022-20402-y. Epub 2022 Apr 30.

Abstract

Bisphenol A (BPA), a broadly disseminated endocrine disturbing chemicals in environment, is harmful to creatures and plants. Plants can uptake and metabolize BPA, but a single plant species ability is limited. Undeniably, plant species compositions have a more vital ability to remove pollutants than a single plant species. However, the mechanisms of plant species compositions alleviating toxicological effects of bisphenol A are poorly understood. Here, we administered plant species compositions, which based on a full-factorial design of Phragmites australis (A), Typha latifolia (B), and Arundo donax (C), to unveil their role in BPA exposure. The results illustrated that the root activity, biomass, and photosynthetic pigment contents of the mixed hydroponic group (e.g., sp(ABC)) were significantly increased under concentration of BPA(1.5, 5, and 10 mg L), which showed that the root activity, fresh weight, dry weight, chlorophyll a, and total chlorophyll contents of shoots were increased. While mixed-hydroponic culture groups (e.g., sp(AB), sp(ABC)) significantly increased antioxidant enzyme activity and antioxidant substances under concentration of BPA(5 and 10 mg L), it astoundingly diminished responsive oxygen species (ROS) and malondialdehyde (MDA) substance, proposing that mixed-hydroponic culture groups calmed oxidative stress. Further analysis revealed that mixed-hydroponic culture groups (e.g., sp(AB), sp(AC), sp(ABC)) of 1.5, 5, and 10 mg L BPA exposure significantly increased detoxification enzyme activity of NADPH-cytochrome P450 reductase (CPR), glutathione S-transferase (GST), and glycosyltransferase (GT). Moreover, mixed-hydroponic culture groups (e.g., sp(AB), sp(AC), sp(ABC)) decreased the BPA substance in leaves, proposing that mixed-hydroponic culture groups advanced BPA metabolism by improving CPR, GST, and GT enzyme activities. These results demonstrated that a mixed-hydroponic culture strategy can alleviate BPA phytotoxicity and possibly offer natural and potential phytoremediation methods for BPA.

摘要

双酚 A(BPA)是一种广泛存在于环境中的内分泌干扰化学物质,对动植物都有害。植物可以吸收和代谢 BPA,但单一植物物种的能力有限。不可否认,植物物种组成比单一植物物种具有更重要的去除污染物的能力。然而,植物物种组成缓解双酚 A 毒性的机制尚不清楚。在这里,我们采用了基于香蒲(A)、芦苇(B)和芦竹(C)的全因子设计的植物物种组成,以揭示它们在 BPA 暴露中的作用。结果表明,在 BPA(1.5、5 和 10mg/L)浓度下,混合水培组(如 sp(ABC))的根活力、生物量和光合色素含量显著增加,表明根活力、鲜重、干重、叶绿素 a 和总叶绿素含量增加。而混合水培培养组(如 sp(AB)、sp(ABC))在 BPA(5 和 10mg/L)浓度下显著增加了抗氧化酶活性和抗氧化物质,同时显著降低了活性氧(ROS)和丙二醛(MDA)物质,表明混合水培培养组减轻了氧化应激。进一步分析表明,混合水培培养组(如 sp(AB)、sp(AC)、sp(ABC))在 1.5、5 和 10mg/L BPA 暴露下显著增加了 NADPH-细胞色素 P450 还原酶(CPR)、谷胱甘肽 S-转移酶(GST)和糖基转移酶(GT)的解毒酶活性。此外,混合水培培养组(如 sp(AB)、sp(AC)、sp(ABC))降低了叶片中的 BPA 物质,表明混合水培培养组通过提高 CPR、GST 和 GT 酶活性促进了 BPA 的代谢。这些结果表明,混合水培培养策略可以减轻 BPA 的植物毒性,并可能为 BPA 提供自然和潜在的植物修复方法。

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