首页> 外文期刊>Agrivita: journal of agricultural science >ISOLATION AND CHARACTERIZATION OF A MOLYBDENUM-REDUCING AND GLYPHOSATE-DEGRADING Klebsiella oxytoca STRAIN SAW-5 IN SOILS FROM SARAWAK
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ISOLATION AND CHARACTERIZATION OF A MOLYBDENUM-REDUCING AND GLYPHOSATE-DEGRADING Klebsiella oxytoca STRAIN SAW-5 IN SOILS FROM SARAWAK

机译:砂拉越土壤中钼还原还原草甘膦产酸克雷伯菌菌株SAW-5的分离与表征

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Bioremediation of pollutants including heavy metals and xenobiotics is an economic and environmentally friendly process. A novel molyb-denum-reducing bacterium with the ability to utilize the pesticide glyphosate as a carbon source is reported. The characterization works were carried out utilizing bacterial resting cells in a microplate format. The bacterium reduces molybdate to Mo-blue optimally between pH 6.3 and 6.8 and at 34oC. Glucose was the best elec-tron donor for supporting molybdate reduction followed by lactose, maltose, melibiose, raffinose, d-mannitol, d-xylose, l-rhamnose, l-arabinose, dulcitol, myo-inositol and glycerol in descending order. Other requirements include a phosphate concentration at 5.0 mM and a molybdate concentration between 20 and 30 mM. The molybdenum blue exhibited an absorption spec-trum resembling a reduced phospho-molybdate. Molybdenum reduction was inhibited by mercury, silver, cadmium and copper at 2 ppm by 45.5, 26.0, 18.5 and 16.3%, respectively. Biochemical analysis identified the bacterium as Klebsiella oxytoca strain Saw-5. To conclude, the capacity of this bacterium to reduce molybdenum into a less toxic form and to grow on glyphosate is novel and makes the bacterium an important instrument for bioremediation of these pollutants.
机译:生物修复包括重金属和异种生物在内的污染物是一种经济和环保的过程。据报道,具有利用草甘膦杀虫剂作为碳源的能力的新型钼还原菌。利用微孔板形式的细菌静止细胞进行表征工作。该细菌可在pH 6.3和6.8之间以及在34oC时将钼酸盐最佳还原为Mo-blue。葡萄糖是支持钼酸盐还原的最佳电子供体,其次是乳糖,麦芽糖,蜜三糖,棉子糖,d-甘露糖醇,d-木糖,l-鼠李糖,l-阿拉伯糖,杜西糖醇,肌醇和甘油。其他要求包括5.0 mM的磷酸盐浓度和20至30 mM的钼酸盐浓度。钼蓝表现出类似于还原的磷钼酸盐的吸收光谱。汞,银,镉和铜在2 ppm时分别抑制钼的还原,分别为45.5%,26.0%,18.5%和16.3%。生化分析鉴定该细菌为产酸克雷伯菌菌株Saw-5。总而言之,这种细菌将钼还原成毒性较低的形式并在草甘膦上生长的能力是新颖的,并且使该细菌成为生物修复这些污染物的重要工具。

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