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Novel phosphate-solubilising bacteria isolated from sewage sludge and the mechanism of phosphate solubilisation

机译:从污水污泥中分离出的新型可溶解磷酸盐的细菌及其溶解磷酸盐的机理

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A great amount of insoluble phosphate in agricultural soils is not available for crops. Three strains of bacteria (Bacillus megaterium YLYP1 Pseudumonas prosekii YLYP6 and Pseudomonas sp. YLYP29) isolated from activated sludge and soil could efficiently solubilise tricalcium phosphate. In particular, the novel strain P. prosekii YLYP6 produced 716 mg L-1 of available phosphate within 6 days under the optimal culture conditions [20 degrees C, pH 7.9, inoculum size of 0.5% (v:v)] determined by response surface methodology. P. prosekii YLYP6 demonstrated efficient phosphate solubilisation in response to broad variations in pH (5-9) and temperature (15-35 degrees C). The phosphate solubilisation curves of the strains fit well with a first-order kinetic model (R-2 0.939), with a halt-life of 1.51-5.94 d for 5.0 g L-1 calcium phosphate. Continuous culture experiments combined with scanning electron microscopic observations and gas chromatography-mass spectrometry analysis revealed that 2,3-dimethylfumaric acid, gluconic and N-butyl-tert-butylamine that were produced by P. prosekii YLYP6 were responsible for phosphate solubilisation by supplying H+ ions and organic anions. Efficient phosphate solubilisation in actual soil by P. prosekii YLYP6 demonstrated the strong application potential to reduce the use of chemical P fertilisers and the resulting agricultural nonpoint pollution. (C) 2018 Elsevier B.V. All rights reserved.
机译:农业土壤中没有大量的不溶性磷酸盐无法用于农作物。从活性污泥和土壤中分离出的三株细菌(巨大芽孢杆菌YLYP1假单胞菌YLYP6和假单胞菌sp。YLYP29)可以有效地溶解磷酸三钙。特别地,新菌株P. prosekii YLYP6在最佳培养条件下[20℃,pH 7.9,接种量为0.5%(v:v)],在6天内产生了716 mg L-1的可用磷酸盐。方法。 P. prosekii YLYP6表现出对pH(5-9)和温度(15-35摄氏度)的宽泛变化有效的磷酸盐增溶作用。该菌株的磷酸盐溶解曲线与一阶动力学模型(R-2> 0.939)非常吻合,对于5.0 g L-1磷酸钙的暂停寿命为1.51-5.94 d。连续培养实验结合扫描电子显微镜观察和气相色谱-质谱分析表明,Prosekii YLYP6生产的2,3-二甲基富马酸,葡萄糖酸和N-丁基叔丁胺是通过供应H +来溶解磷酸盐的原因离子和有机阴离子。 P. prosekii YLYP6在实际土壤中有效地增溶磷酸盐显示出减少化学P肥料的使用和由此产生的农业面源污染的强大应用潜力。 (C)2018 Elsevier B.V.保留所有权利。

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