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鞘氨醇胞菌B1咔唑降解基因carB的克隆与功能研究
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作者 边晨凯 张宇 +2 位作者 陈度宇 王森 许雷 《中国农业科技导报》 CAS CSCD 北大核心 2018年第2期56-64,共9页
以分离到的咔唑高效降解菌鞘氨醇胞菌B1为材料,研究该菌株咔唑降解基因簇的组成和表达模式,阐释咔唑降解过程中关键酶的作用机理。通过分析不同菌株咔唑降解基因簇中基因的保守区,从菌株B1中成功克隆得到基因簇中car Aa、car Ba、car Bb... 以分离到的咔唑高效降解菌鞘氨醇胞菌B1为材料,研究该菌株咔唑降解基因簇的组成和表达模式,阐释咔唑降解过程中关键酶的作用机理。通过分析不同菌株咔唑降解基因簇中基因的保守区,从菌株B1中成功克隆得到基因簇中car Aa、car Ba、car Bb和car C基因片段。通过RT-PCR证实菌株B1的咔唑降解基因簇为诱导表达。通过同源克隆得到降解关键基因car B和编码两个亚基的car Ba、car Bb基因,并在大肠杆菌中进行了异源表达。以2,3-二羟基联苯为底物,对Car B粗酶液进行了酶学性质分析。研究表明Car B蛋白催化最适p H和温度分别为7.4和30℃,Fe2+能显著提高酶的催化活力。 展开更多
关键词 咔唑 鞘氨醇胞菌 降解基因 酶学性质
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Degradation Characteristics and Community Structure of a Hydrocarbon Degrading Bacterial Consortium 被引量:8
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作者 Li Zheng Gu Guizhou +1 位作者 Zhao Chaocheng Zhao Dongfeng 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2015年第3期15-24,共10页
A hydrocarbon degrading bacterial consortium KO5-2 was isolated from oil-contaminated soil of Karamay in Xinjiang, China, which could remove 56.9% of 10 g/L total petroleum hydrocarbons(TPH) at 30 ℃ after 7 days of i... A hydrocarbon degrading bacterial consortium KO5-2 was isolated from oil-contaminated soil of Karamay in Xinjiang, China, which could remove 56.9% of 10 g/L total petroleum hydrocarbons(TPH) at 30 ℃ after 7 days of incubation, and could also remove 100% of fluorene, 98.93% of phenanthrene and 65.73% of pyrene within 3, 7 and 9 days, respectively. Twelve strains from six different genera were isolated from KO5-2 and only eight ones were able to utilize the TPH. The denaturing gradient gel electrophoresis(DGGE) was used to investigate the microbial community shifts in five different carbon sources(including TPH, saturated hydrocarbons, fluorene, phenanthrene and pyrene). The test results indicated that the community compositions of KO5-2 in carbon sources of TPH and saturated hydrocarbons, respectively, were roughly the same, while they were distinctive in the three different carbon sources of PAHs. Rhodococcus sp. and Pseudomonas sp. could survive in the five kinds of carbon sources. Bacillus sp., Sphingomonas sp. and Ochrobactrum sp. likely played key roles in the degradation of saturated hydrocarbons, PAHs and phenanthrene, respectively. This study showed that specific bacterial phylotypes were associated with different contaminants and complex interactions between bacterial species, and the medium conditions influenced the biodegradation capacity of the microbial communities involved in bioremediation processes. 展开更多
关键词 bacterial consortium community structure degradation characteristics total petroleum hydrocarbons (TPH) denaturing gradient gel electrophoresis (DGGE)
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