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首页> 外文期刊>Biodegradation >Biodegradation of microcystin-LR and-RR by a novel microcystin-degrading bacterium isolated from Lake Taihu
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Biodegradation of microcystin-LR and-RR by a novel microcystin-degrading bacterium isolated from Lake Taihu

机译:从太湖分离的新型降解微囊藻毒素细菌对微囊藻毒素LR和RR的生物降解

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Microcystin-LR (MC-LR) and microcystin-RR (MC-RR) are the two most common microcystins (MCs) present in fresh water posing a direct threat to public health because of their hepatotoxicity. A novel MC-degrading bacterium designated MC-LTH1 capable of degrading MC-LR and -RR was isolated, and the degradation rates and mechanisms of MC-LR and -RR for this bacterium were investigated. The bacterium was identified as Bordetella sp. and shown to possess a homologous mlrA gene responsible for degrading MCs. To the best of our knowledge, this is the first report of mlrA gene detection in Bordetella species. MC-LR and -RR were completely degraded separately at rates of 0.31 mg/(L h) and 0.17 mg/(L h). However, the degradation rates of MC-LR and -RR decreased surprisingly to 0.27 mg/(L h) and 0.12 mg/(L h), respectively, when both of them were simultaneously present. Degradation products were identified by high performance liquid chromatography coupled with time-of-flight mass spectrometry. Adda (m/z 332.2215, C20H29NO3) commonly known as a final product of MC degradation by isolated bacteria was detected as an intermediate in this study. Linearized MC-LR (m/z 1013.5638, C49H76N10O13), linearized MC-RR (m/z 1056.4970, C49H77N13O13), and tetrapeptide (m/z 615.3394, C32H46N4O8) were also detected as intermediates. These results indicate that the bacterial strain MC-LTH1 is quite efficient for the detoxification of MC-LR and MC-RR, and possesses significant bioremediation potential.
机译:微囊藻毒素-LR(MC-LR)和微囊藻毒素-RR(MC-RR)是淡水中存在的两种最常见的微囊藻毒素(MC),因为它们具有肝毒性,对公共健康构成直接威胁。分离了一种新型的能降解MC-LR和-RR的MC降解细菌MC-LTH1,并研究了该细菌的降解速率和降解机理。该细菌被鉴定为博德特氏菌。并显示具有负责降解MC的同源mlrA基因。据我们所知,这是在博德特氏菌属物种中检测到mlrA基因的第一份报告。 MC-LR和-RR分别以0.31 mg /(L h)和0.17 mg /(L h)的速率完全降解。然而,当同时存在MC-LR和-RR时,它们的降解率令人惊讶地分别降至0.27 mg /(L h)和0.12 mg /(L h)。通过高效液相色谱和飞行时间质谱法鉴定降解产物。在本研究中,检测到通常被称为分离细菌降解MC最终产物的Adda(m / z 332.2215,C20H29NO3)作为中间体。线性MC-LR(m / z 1013.5638,C49H76N10O13),线性MC-RR(m / z 1056.4970,C49H77N13O13)和四肽(m / z 615.3394,C32H46N4O8)也被检测为中间体。这些结果表明,细菌菌株MC-LTH1对于MC-LR和MC-RR的解毒是相当有效的,并且具有显着的生物修复潜力。

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