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Microcystin-Degrading Activity of an Indigenous Bacterial Strain Stenotrophomonas acidaminiphila MC-LTH2 Isolated from Lake Taihu

机译:太湖分离的土著细菌嗜酸嗜单胞菌MC-LTH2的微囊藻毒素降解活性。

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摘要

Microcystin-LR (MC-LR) and microcystin-RR (MC-RR) produced by harmful cyanobacterial blooms (HCBs) pose substantial threats to the ecosystem and public health due to their potential hepatotoxicity. Degradation of microcystins (MCs) by indigenous bacteria represents a promising method for removing MCs from fresh water without harming the aquatic environment, but only a few microcystin (MC)-degrading bacteria have been isolated and had their mechanisms reported. This study aimed to isolate indigenous bacteria from Lake Taihu, and investigate the capability and mechanism of MC degradation by these bacteria. During a Microcystis bloom, an indigenous MC-degrading bacterium designated MC-LTH2 was successfully isolated from Lake Taihu, and identified as Stenotrophomonas acidaminiphila based on phylogenetic analysis. In the presence of MC-LR together with MC-RR, the strain MC-LTH2 was capable of totally degrading both simultaneously in 8 days, at rates of 3.0 mg/(L⋅d) and 5.6 mg/(L⋅d), respectively. The degradation rates of MCs were dependent on temperature, pH, and initial MC concentration. Adda (3-amino-9-methoxy-2, 6, 8-trimethyl-10-phenyldeca-4, 6-dienoic acid) was detected as an intermediate degradation product of MCs using high performance liquid chromatography coupled with time-of-flight mass spectrometry (HPLC-TOF-MS). To the best of our knowledge, this is the first report of Stenotrophomonas acidaminiphila capable of degrading two MC analogues and other compounds containing Adda residue completely under various conditions, although the mlrA gene in the strain was not detected. These results indicate the Stenotrophomonas acidaminiphila strain MC-LTH2 possesses a significant potential to be used in bioremediation of water bodies contaminated by MC-LR and MC-RR, and is potentially involved in the degradation of MCs during the disappearance of the HCBs in Lake Taihu.
机译:有害蓝藻水华(HCB)产生的微囊藻毒素LR(MC-LR)和微囊藻毒素RR(MC-RR)由于其潜在的肝毒性而对生态系统和公共健康构成重大威胁。原生细菌降解微囊藻毒素(MCs)代表了一种从淡水中去除MCs而又不损害水生环境的有前途的方法,但是仅分离了少数降解微囊藻毒素(MC)的细菌,并报道了其机理。这项研究旨在从太湖中分离出本地细菌,并研究这些细菌降解MC的能力和机理。在微囊藻开花期间,成功地从太湖分离出了一种名为MC-LTH2的本地MC降解细菌,并根据系统发育分析将其鉴定为嗜酸嗜单胞菌。在存在MC-LR和MC-RR的情况下,菌株MC-LTH2能够在8天内同时以3.0 mg /(L⋅d)和5.6 mg /(L⋅d)的速率完全降解,分别。 MC的降解速率取决于温度,pH和初始MC浓度。使用高效液相色谱-飞行时间联用技术检测到Adda(3-氨基-9-甲氧基-2,6,8-三甲基-10-苯基癸四-4,6-二烯酸)是MC的中间降解产物质谱(HPLC-TOF-MS)。据我们所知,这是嗜酸单核单胞菌能够在不同条件下完全降解两个MC类似物和其他含有Adda残基的化合物的第一个报道,尽管该菌株中没有检测到mlrA基因。这些结果表明,嗜酸单核嗜酸单胞菌菌株MC-LTH2具有巨大的潜力,可用于对被MC-LR和MC-RR污染的水体进行生物修复,并且在太湖六氯代苯消失期间可能参与MC的降解。 。

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