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Microcystin-LR Biodegradation by Bacillus sp.: Reaction Rates and Possible Genes Involved in the Degradation

机译:芽孢杆菌的微囊藻毒素-LR生物降解:反应速率和降解涉及的可能基因。

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Harmful cyanobacteria blooms may deteriorate freshwater environments, leading to bad water quality that can adversely affect the health of humans, animals, and aquatic life. Many cyanobacteria can produce toxic metabolites, with Microcystin-LR (MC-LR) being the most commonly detected cyanotoxin in fresh water bodies. In this study, a MC-LR degrading Bacillus sp. strain was isolated from Hulupi Lake (HLPL), Taiwan and tested for its degradability of the cyanotoxin. The results showed that the degradation of Microcystin-LR by the isolated Bacillus sp. was temperature-dependent with an optimum MC-LR removal at 37 °C and a first order degradation constant rate for 0.22 day ?1 . The degradation rate was also found to increase with decreasing MC-LR concentrations and increasing Bacillus sp. concentrations. Biomolecular monitoring of three types of genes ( mlr A, CAAX, and GST) involved in the degradation indicated that mlr A, and CAAX genes were present in the indigenous bacteria in HLPL water samples. However, for the isolated Bacillus sp. strain, only CAAX genes were detected. The absence of the mlr A gene in the isolated Bacillus sp. strain shows that the degradation of MC-LR does not necessarily follow the pathways with mlr A, and can also follow the pathways involved with CAAX type II amino-terminal protease.
机译:有害的蓝细菌开花可能会破坏淡水环境,导致不良的水质,可能对人类,动物和水生生物的健康产生不利影响。许多蓝细菌会产生有毒的代谢产物,其中微囊藻毒素-LR(MC-LR)是淡水体中最常见的蓝藻毒素。在这项研究中,MC-LR降解芽孢杆菌。该菌株是从台湾Hulupi湖(HLPL)分离出来的,并对其氰毒素的降解能力进行了测试。结果表明,分离的芽孢杆菌属菌株可降解微囊藻毒素-LR。温度取决于温度,在37°C时最佳的MC-LR去除率和0.22天-1的一级降解恒定速率。还发现降解速率随着MC-LR浓度的降低和芽孢杆菌的增加而增加。浓度。对降解涉及的三种类型的基因(mlr A,CAAX和GST)的生物分子监测表明,mlr A和CAAX基因存在于HLPL水样品中的原生细菌中。但是,对于分离的芽孢杆菌属。菌株,仅检测到CAAX基因。在分离的芽孢杆菌属物种中不存在mlr A基因。菌株显示,MC-LR的降解并不一定遵循mlr A的途径,也可以遵循与CAAX II型氨基末端蛋白酶有关的途径。

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