College of Life Science, Liaocheng University, Liaocheng, 252059, China.
Biodegradation. 2023 Aug;34(4):371-381. doi: 10.1007/s10532-023-10023-8. Epub 2023 Mar 6.
3, 5, 6-Trichloro-2-pyridinol (TCP) is a metabolite of the insecticide chlorpyrifos and the herbicide triclopyr, and it is higher toxic than the parent compounds. Microbially-mediated mineralization appears to be the primary degradative pathway and the important biological process of detoxification. However, little information is available on TCP complete metabolic pathways and mechanisms. In this study, the degradation of TCP was studied with a novel strain Micrococcus luteus ML isolated from a stable TCP degrading microbiota. Strain ML was capable of degrading 61.6% of TCP (50 mg/L) and 35.4% of chlorpyrifos (50 mg/L) at 24 h and 48 h under the optimal conditions (temperature: 35 °C; pH: 7.0), respectively. It could also degrade 3, 5-dichloro-2-pyridone, 6-chloropyridin-2-ol, 2-hydroxypyridine and phoxim when provided as sole carbon and energy sources. Seven TCP intermediate metabolites were detected in strain ML and two possible degradation pathways of TCP were proposed on the basis of LC-MS analysis. Both the hydrolytic-oxidative dechlorination pathway and the denitrification pathway might be involved in TCP biodegradation by strain ML. To the best of our knowledge, this is the first report on two different pathways responsible for TCP degradation in one strain, and this finding also provides novel information for studying the metabolic mechanism of TCP in pure culture.
3,5,6-三氯-2-吡啶醇(TCP)是杀虫剂毒死蜱和除草剂三氯吡氧乙酸的代谢物,其毒性比母体化合物更高。微生物介导的矿化似乎是 TCP 的主要降解途径和解毒的重要生物过程。然而,关于 TCP 的完整代谢途径和机制的信息很少。本研究以从稳定的 TCP 降解微生物群中分离出的新型微球菌 ML 菌株研究了 TCP 的降解。在最佳条件(温度:35°C;pH:7.0)下,菌株 ML 在 24 小时和 48 小时内分别能够降解 61.6%的 TCP(50mg/L)和 35.4%的毒死蜱(50mg/L)。当作为唯一的碳源和能源时,它还可以降解 3,5-二氯-2-吡啶酮、6-氯吡啶-2-醇、2-羟基吡啶和辛硫磷。在 ML 菌株中检测到 7 种 TCP 中间代谢物,并根据 LC-MS 分析提出了两种可能的 TCP 降解途径。ML 菌株可能同时涉及水解-氧化脱氯途径和反硝化途径来进行 TCP 生物降解。据我们所知,这是第一个关于一个菌株中两种不同途径负责 TCP 降解的报告,这一发现也为研究纯培养物中 TCP 的代谢机制提供了新的信息。