Dehalococcoides-Containing Enrichment Cultures Transform Two Chlorinated Organophosphate Esters

TCEP 脱卤球绦虫 化学 磷酸盐 脱氯作用 有机磷 生物化学 生物 有机化学 杀虫剂 催化作用 生物降解 氯乙烯 农学 磷化氢 聚合物 共聚物
作者
Xifen Zhu,Shaofu Deng,Yun Fang,Sen Yang,Yin Zhong,Dan Li,Heli Wang,Junhong Wu,Ping’an Peng
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:56 (3): 1951-1962 被引量:28
标识
DOI:10.1021/acs.est.1c06686
摘要

Although chlorinated organophosphate esters (Cl-OPEs) have been reported to be ubiquitously distributed in various anoxic environments, little information is available on their fate under anoxic conditions. In this study, we report two Dehalococcoides-containing enrichment cultures that transformed 3.88 ± 0.22 μmol tris(2-chloroethyl) phosphate (TCEP) and 2.61 ± 0.02 μmol tris(1-chloro-2-propyl) phosphate (TCPP) within 10 days. Based on the identification of the transformed products and deuteration experiments, we inferred that TCEP may be transformed to generate bis(2-chloroethyl) phosphate and ethene via one-electron transfer (radical mechanism), followed by C-O bond cleavage. Ethene was subsequently reduced to ethane. Similarly, TCPP was transformed to form bis(1-chloro-2-propyl) phosphate and propene. 16S rRNA gene amplicon sequencing and quantitative polymerase chain reaction analysis revealed that Dehalococcoides was the predominant contributor to the transformation of TCEP and TCPP. Two draft genomes of Dehalococcoides assembled from the metagenomes of the TCEP- and TCPP-transforming enrichment cultures contained 14 and 15 putative reductive dehalogenase (rdh) genes, respectively. Most of these rdh genes were actively transcribed, suggesting that they might contribute to the transformation of TCEP and TCPP. Taken together, this study provides insights into the role of Dehalococcoides during the transformation of representative Cl-OPEs.
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