Loss of the ssrA genome island led to partial debromination in the PBDE respiring Dehalococcoides mccartyi strain GY50

脱卤酶 拉伤 生物 基因组 脱卤球绦虫 基因 多溴联苯醚 全基因组测序 遗传学 微生物学 污染物 生态学 化学 有机化学 氯乙烯 共聚物 解剖 聚合物
作者
Chang Ding,Matthew J. Rogers,Kun‐Lin Yang,Jianzhong He
出处
期刊:Environmental Microbiology [Wiley]
卷期号:19 (7): 2906-2915 被引量:26
标识
DOI:10.1111/1462-2920.13817
摘要

Summary 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 ( rdhA s), 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.
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