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首页> 外文期刊>Applied and Environmental Microbiology >Biodesulfurization of Naphthothiophene and Benzothiophene through Selective Cleavage of Carbon-Sulfur Bonds by Rhodococcus sp. Strain WU-K2R
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Biodesulfurization of Naphthothiophene and Benzothiophene through Selective Cleavage of Carbon-Sulfur Bonds by Rhodococcus sp. Strain WU-K2R

机译:Rhodococcus sp。通过选择性切割碳-硫键对萘噻吩和苯并噻吩进行生物脱硫。菌株WU-K2R

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摘要

Naphtho[2,1-b]thiophene (NTH) is an asymmetric structural isomer of dibenzothiophene (DBT), and in addition to DBT derivatives, NTH derivatives can also be detected in diesel oil following hydrodesulfurization treatment. Rhodococcus sp. strain WU-K2R was newly isolated from soil for its ability to grow in a medium with NTH as the sole source of sulfur, and growing cells of WU-K2R degraded 0.27 mM NTH within 7 days. WU-K2R could also grow in the medium with NTH sulfone, benzothiophene (BTH), 3-methyl-BTH, or 5-methyl-BTH as the sole source of sulfur but could not utilize DBT, DBT sulfone, or 4,6-dimethyl-DBT. On the other hand, WU-K2R did not utilize NTH or BTH as the sole source of carbon. By gas chromatography-mass spectrometry analysis, desulfurized NTH metabolites were identified as NTH sulfone, 2′-hydroxynaphthylethene, and naphtho[2,1-b]furan. Moreover, since desulfurized BTH metabolites were identified as BTH sulfone, benzo[c][1,2]oxathiin S-oxide, benzo[c][1,2]oxathiin S,S-dioxide, o-hydroxystyrene, 2-(2′-hydroxyphenyl)ethan-1-al, and benzofuran, it was concluded that WU-K2R desulfurized NTH and BTH through the sulfur-specific degradation pathways with the selective cleavage of carbon-sulfur bonds. Therefore, Rhodococcus sp. strain WU-K2R, which could preferentially desulfurize asymmetric heterocyclic sulfur compounds such as NTH and BTH through the sulfur-specific degradation pathways, is a unique desulfurizing biocatalyst showing properties different from those of DBT-desulfurizing bacteria.
机译:萘并[2,1-b]噻吩(NTH)是二苯并噻吩(DBT)的不对称结构异构体,除DBT衍生物外,加氢脱硫处理后的柴油中也可检测到NTH衍生物。红球菌从土壤中新分离出WU-K2R菌株,因为它能够在以NTH为唯一硫源的培养基中生长,并且WU-K2R的生长细胞在7天内降解了0.27 mM NTH。 WU-K2R也可以在含有NTH砜,苯并噻吩(BTH),3-甲基-BTH或5-甲基-BTH作为唯一硫源的培养基中生长,但不能利用DBT,DBT砜或4,6-二甲基-DBT。另一方面,WU-K2R没有利用NTH或BTH作为唯一的碳源。通过气相色谱-质谱法分析,脱硫的NTH代谢物被鉴定为NTH砜,2'-羟基萘乙炔和萘并[2,1-b]呋喃。此外,由于将脱硫的BTH代谢物鉴定为BTH砜,因此,苯并[c] [1,2]氧杂环丁烷S-氧化物,苯并[c] [1,2]氧杂环丁烷S,S-二氧化物,邻羟基苯乙烯,2-(2得出的结论是,WU-K2R通过硫特异性降解途径通过选择性裂解碳-硫键,使NTH和BTH脱硫。因此,红球菌属。 WU-K2R菌株可以通过硫特异性降解途径优先对不对称杂环硫化合物(如NTH和BTH)进行脱硫,是一种独特的脱硫生物催化剂,其性能不同于DBT脱硫细菌。

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