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2,2',4,4'-四溴联苯醚(BDE-47)在小麦中的吸收、转运和转化机制的新见解:基于化合物特异性稳定同位素和转录组分析

Novel Insights into Uptake, Translocation, and Transformation Mechanisms of 2,2',4,4'-Tetra Brominated Diphenyl Ether (BDE-47) in Wheat ( L.): Implication by Compound-Specific Stable Isotope and Transcriptome Analysis.

作者信息

Wang Guoguang, Wang Xu, Liu Yu, Liu Shuaihao, Xing Ziao, Guo Pengxu, Li Chuanyuan, Wang Haixia

机构信息

College of Environmental Science and Engineering, Dalian Maritime University, No.1 Linghai Road, Dalian 116026, P. R. China.

Navigation College, Dalian Maritime University, No.1 Linghai Road, Dalian 116026, P. R. China.

出版信息

Environ Sci Technol. 2023 Oct 10;57(40):15266-15276. doi: 10.1021/acs.est.3c04898. Epub 2023 Sep 29.

Abstract

The uptake, translocation, and transformation of 2,2',4,4'-tetra brominated diphenyl ether (BDE-47) in wheat ( L.) were comprehensively investigated by hydroponic experiments using compound-specific stable isotope analysis (CSIA) and transcriptome analysis. The results indicated that BDE-47 was quickly adsorbed on epidermis of wheat roots and then absorbed in roots via water and anion channels as well as an active process dependent on energy. A small fraction of BDE-47 in roots was subjected to translocation acropetally, and an increase of δC values in shoots than roots implied that BDE-47 in roots had to cross at least one lipid bilayer to enter the vascular bundle via transporters. In addition, accompanied by the decreasing concentrations, δC values of BDE-47 showed the increasing trend with time in shoots, indicating occurrence of BDE-47 transformation. OH-PBDEs were detected as transformation products, and the hydroxyl group preferentially substituted at the ortho-positions of BDE-47. Based on transcriptome analysis, genes encoding polybrominated diphenyl ether (PBDE)-metabolizing enzymes, including cytochrome P450 enzymes, nitrate reductases, and glutathione -transferases, were significantly upregulated after exposure to BDE-47 in shoots, further evidencing BDE-47 transformation. This study first reported the stable carbon isotope fractionation of PBDEs during translocation and transformation in plants, and application of CSIA and transcriptome analysis allowed systematically characterize the environmental behaviors of pollutants in plants.

摘要

通过水培实验,利用化合物特异性稳定同位素分析(CSIA)和转录组分析,全面研究了2,2',4,4'-四溴二苯醚(BDE-47)在小麦中的吸收、转运和转化情况。结果表明,BDE-47迅速吸附在小麦根表皮上,然后通过水通道、阴离子通道以及依赖能量的主动过程被根吸收。根中一小部分BDE-47向地上部进行转运,地上部δC值高于根部,这意味着根中的BDE-47必须至少穿过一层脂质双分子层才能通过转运蛋白进入维管束。此外,随着浓度降低,地上部BDE-47的δC值随时间呈上升趋势,表明发生了BDE-47的转化。检测到OH-PBDEs作为转化产物,羟基优先取代在BDE-47的邻位。基于转录组分析,暴露于BDE-47后,地上部编码多溴二苯醚(PBDE)代谢酶的基因,包括细胞色素P450酶、硝酸还原酶和谷胱甘肽转移酶,显著上调,进一步证明了BDE-47的转化。本研究首次报道了植物转运和转化过程中PBDEs的稳定碳同位素分馏情况,CSIA和转录组分析的应用能够系统地表征植物中污染物的环境行为。

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