Welcome to talk about 62-23-7, If you have any questions, you can contact Ma, XD; Liang, B; Qi, MY; Yun, H; Shi, K; Li, ZL; Guo, YQ; Yan, PS; Liu, SJ; Wang, AJ or send Email.. SDS of cas: 62-23-7
I found the field of Engineering; Environmental Sciences & Ecology very interesting. Saw the article Novel Pathway for Chloramphenicol Catabolism in the Activated Sludge Bacterial Isolate Sphingobium sp. CAP-1 published in 2020.0. SDS of cas: 62-23-7, Reprint Addresses Liang, B; Wang, AJ (corresponding author), Harbin Inst Technol Shenzhen, Sch Civil & Environm Engn, Shenzhen 518055, Peoples R China.; Liang, B; Wang, AJ (corresponding author), Chinese Acad Sci, Res Ctr Ecoenvironm Sci, Key Lab Environm Biotechnol, Beijing 100085, Peoples R China.; Liang, B; Wang, AJ (corresponding author), Harbin Inst Technol, Sch Environm, State Key Lab Urban Water Resource & Environm, Harbin 150090, Peoples R China.. The CAS is 62-23-7. Through research, I have a further understanding and discovery of 4-Nitrobenzoic acid
The chlorinated nitroaromatic antibiotic chloramphenicol (CAP) is a refractory contaminant that is widely present in various environments. However, few CAP-mineralizing bacteria have been documented, and a complete CAP catabolism pathway has yet to be identified. In this study, the bacterial strain Sphingobium sp. CAP-1 was isolated from an activated sludge sample and was shown to be capable of aerobically subsisting on CAP as the sole carbon, nitrogen, and energy source while simultaneously and efficiently degrading CAP. p-Nitrobenzoic acid (PNBA), p-nitrobenzaldehyde (PNBD), protocatechuate (PCA), and the novel side chain C-3 -hydroxy-oxygenated product of CAP (O-CAP) were identified during CAP degradation. Strain CAP-1 was able to convert O-CAP to intermediate product PNBA. The putative functional genes associated with PNBA catabolism into the tricarboxylic acid cycle via PCA and floc formation were also identified by genome sequencing and comparative proteome analysis. A complete pathway for CAP catabolism was proposed. The discovery of a novel CAP oxidation/detoxification process and a complete pathway for CAP catabolism enriches the fundamental understanding of the bacterial catabolism of antibiotics, providing new insights into the microbial-mediated fate, transformation, and resistance risk of CAP in the environment. The molecular basis of CAP catabolism and floc formation in strain CAP-1 also offers theoretical guidance for the enhanced bioremediation of CAP-containing environments.
Welcome to talk about 62-23-7, If you have any questions, you can contact Ma, XD; Liang, B; Qi, MY; Yun, H; Shi, K; Li, ZL; Guo, YQ; Yan, PS; Liu, SJ; Wang, AJ or send Email.. SDS of cas: 62-23-7
Reference:
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