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新型菌株 Alcaligenes sp. T17 对四环素的生物转化。

Tetracycline biotransformation by a novel bacterial strain Alcaligenes sp. T17.

机构信息

State Key Joint Laboratory of Environmental Simulation and Pollution Control, College of Environmental Sciences and Engineering, Peking University, Beijing 100871, China.

China Waterborne Transport Research Institute, Ministry of Transport of the People's Republic of China, Beijing 100088, China.

出版信息

Sci Total Environ. 2022 Aug 1;832:155130. doi: 10.1016/j.scitotenv.2022.155130. Epub 2022 Apr 9.

Abstract

Comprehensive knowledge on the biotransformation of tetracycline (TC) is critical for the improvement of TC removal in the bioremediation process. This work isolated a novel TC-degrading bacterial strain Alcaligenes sp. T17 and explored its degradation ability under different conditions. Temperature and pH could affect the degradation efficiency, and higher temperature as well as neutral and weakly acidic conditions were conducive to the biotransformation. Response surface methodology predicted the maximum degradation rate of TC (94.35%) under the condition of 25.15 mg/L TC, pH 7.23, and inoculation dosage 1.17% at 40 °C. According to the result of disk diffusion tests, the biodegradation products had lower antimicrobial potency than the parent compound. Five potential biodegradation products were identified, and a possible degradation pathway (degrouping, oxidation and ring-opening) was proposed. The draft genome of strain T17 was also determined. Genomic analysis indicated that strain T17 harbored multiple genes that participated in the metabolism of aromatic compounds as well as genes encoding oxygenases. These functional genes may be relevant to TC biotransformation. This study could provide new insights towards the biotransformation of TC mediated by bacteria.

摘要

全面了解四环素(TC)的生物转化对于提高生物修复过程中 TC 的去除率至关重要。本工作分离到一株新型 TC 降解细菌 Alcaligenes sp. T17,并研究了其在不同条件下的降解能力。温度和 pH 值会影响降解效率,较高的温度以及中性和弱酸性条件有利于转化。响应面法预测在 TC 浓度为 25.15mg/L、pH 值 7.23、接种量 1.17%、温度 40°C 的条件下,TC 的最大降解率为 94.35%。根据抑菌圈试验结果,生物降解产物的抗菌活性低于母体化合物。鉴定出 5 种潜在的降解产物,并提出了可能的降解途径(去甲酰基、氧化和开环)。还确定了菌株 T17 的基因组草图。基因组分析表明,菌株 T17 携带多种参与芳香族化合物代谢以及编码加氧酶的基因。这些功能基因可能与 TC 的生物转化有关。该研究可为细菌介导的 TC 生物转化提供新的见解。

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