Fujian Provincial Key Laboratory for Coast Ecology and Environmental Studies, College of the Environment and Ecology, Xiamen University, Xiamen 361102, China.
Environ Sci Technol. 2023 Apr 25;57(16):6673-6681. doi: 10.1021/acs.est.3c00311. Epub 2023 Apr 13.
Polyhalogenated carbazoles (PHCZs) have been increasingly detected in the environment as a result of anthropogenic and natural origin. However, it is unclear how PHCZs are naturally produced. In this study, the formation of PHCZs from bromoperoxidase (BPO)-mediated halogenation of carbazole was investigated. A total of six PHCZs were identified in reactions under different incubation conditions. The presence of Br significantly influenced the formation of PHCZs. The products were first dominated by 3-bromocarbazole and then 3,6-dibromocarbazole as the reactions proceeded. Both bromo- and chlorocarbazoles were identified in the incubations with trace Br, suggesting the co-occurrence of BPO-catalyzed bromination and chlorination. However, BPO-catalyzed chlorination of carbazole was much weaker than that of bromination. The formation of PHCZs could be attributable to the halogenation of carbazole by reactive halogen species generated from BPO-catalyzed oxidation of Br and Cl by HO. The halogenation was found to follow a successive substitution order of C-3, C-6, and C-1 on the carbazole ring, forming 3-, 3,6-, and 1,3,6-isomers. Similar to the incubation experiments, six PHCZs were for the first time detected in red algal samples collected from the South China Sea, China, suggesting the biogenesis of PHCZs in marine red algae. Given the widespread distribution of red algae in the marine environment, BPO-catalyzed halogenation of carbazole may be a natural origin for PHCZs.
多卤代咔唑(PHCZs)由于人为和自然来源,在环境中被越来越多地检测到。然而,目前尚不清楚 PHCZs 是如何自然产生的。在这项研究中,研究了溴过氧化物酶(BPO)介导的咔唑卤化作用下 PHCZs 的形成。在不同孵育条件下的反应中,共鉴定出六种 PHCZs。Br 的存在显著影响 PHCZs 的形成。产物最初以 3-溴咔唑为主,随着反应的进行,3,6-二溴咔唑成为主要产物。在含有痕量 Br 的孵育中,既鉴定出了溴代咔唑,也鉴定出了氯代咔唑,表明 BPO 催化的溴化和氯化同时发生。然而,BPO 催化的咔唑氯化作用比溴化作用弱得多。PHCZs 的形成可归因于 BPO 催化的 Br 和 Cl 被 HO 氧化生成的活性卤素物种对咔唑的卤化。卤化遵循咔唑环上 C-3、C-6 和 C-1 的连续取代顺序,形成 3-、3,6-和 1,3,6-异构体。与孵育实验相似,首次在从中国南海采集的红藻样本中检测到六种 PHCZs,表明海洋红藻中 PHCZs 的生物合成。鉴于红藻在海洋环境中的广泛分布,BPO 催化的咔唑卤化可能是 PHCZs 的一种自然来源。