Polybrominated diphenyl ethers (PBDEs), chemicals commonly used as flame-retardants in consumer products, are emerging persistent organic pollutants that are ubiquitous in the environment. In this study, we report a PBDE-respiring isolate - Dehalococcoides mccartyi strain GY50, which debrominates the most toxic tetra- and penta-BDE congeners (∼1.4 µM) to diphenyl ether within 12 days with hydrogen as the electron donor. The complete genome sequence revealed 26 reductive dehalogenase homologous genes (rdhAs), among which three genes (pbrA1, pbrA2 and pbrA3) were highly expressed during PBDE debromination. After 10 transfers of GY50 with trichloroethene or 2,4,6-trichlorophenol as the electron acceptor instead of PBDEs, the ssrA-specific genome island (ssrA-GI) containing pbrA1 and pbrA2 was deleted from the genome of strain GY50, leading to two variants (strain GY52 with trichloroethene, strain GY55 with 2,4,6-trichlorophenol) with identically impaired debromination capabilities (debromination of penta-/tetra-BDEs ceased at di-BDE 15). Through analysis of Illumina paired-end sequencing data, we identified read pairs that probably came from variants that contain ssrA-GI deletions, indicating their possible presence in the original strain GY50 culture. The two variant strains provide real-time examples on rapid evolution of organohalide-respiring organisms. As PBDE-respiring organisms, GY50-like strains may serve as key players in detoxifying PBDEs in contaminated environments.

译文

:多溴联苯醚(PBDEs),通常用作消费品的阻燃剂,是环境中普遍存在的新兴持久性有机污染物。在这项研究中,我们报告了一种可呼吸PBDE的分离株-Dehalococcoidesides mccartyi菌株GY50,它在12天之内用氢作为电子供体,将毒性最强的四溴和五溴二苯醚同系物(约1.4 µM)溴化为二苯醚。完整的基因组序列揭示了26个还原性脱卤酶同源基因(rdhA),其中三个基因(pbrA1,pbrA2和pbrA3)在PBDE脱溴过程中高度表达。用三氯乙烯或2,4,6-三氯苯酚代替PBDEs转移GY50 10次后,从菌株GY50的基因组中删除了含有pbrA1和pbrA2的ssrA特异性基因组岛(ssrA-GI)。变体(具有三氯乙烯的GY52菌株,具有2,4,6-三氯苯酚的GY55菌株)的脱溴能力受到同样的损害(五溴/四溴二苯醚的脱溴终止于二溴二苯醚15)。通过分析Illumina的配对末端测序数据,我们确定了可能来自包含ssrA-GI缺失的变体的读对,表明它们可能存在于原始菌株GY50中。这两种变体菌株提供了呼吸有机卤化物的生物快速进化的实时实例。作为PBDE的呼吸生物,类GY50菌株可在受污染的环境中充当PBDE排毒的关键角色。

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