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Prospects of in vivo ~(31)P NMR method in glyphosate degradation studies in whole cell system

机译:体内〜(31)P NMR法在全细胞系统中草甘膦降解研究中的前景

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摘要

The degradation of the phosphonate herbicide glyphosate (N-phosphonomethylglycine) by four taxonom-icaily distinct microorganisms was studied in vivo in whole cell system using phosphorus nuclear magnetic spectroscopy (~(31)P NMR). The time-course of glyphosate metabolization in dense cell cultures was followed by means of ~(31)P NMR up to 21 days after the addition. The results obtained by this non-invasive way confirmed that the cells of Spirulina platensis and Streptomyces lusitanus biodegrade herbicide. Moreover, phosphorus starvation influenced the rate of glyphosate degradation by S. platensis. On the other hand, the results of similar measurements in the cultures of green algae Chlorella vulgaris showed that this aquatic plant, however growing in the medium containing 1 mM of N-phosphonomethylglycine, did not seem to posses the ability of its biodegradation. Additionally, the use of this method allowed us to find the new fungal strain Fusarium dimerum, which is able to biodegrade and utilize the glyphosate as the sole source of phosphorus. The results of our studies on usefulness of in vivo~(31)P NMR for tracing glyphosate degradation in whole cell systems revealed that this non-invasive, one-step method, might be considered as a valuable tool in environmental biotechnology of organophosphonate xenobiotics.
机译:使用磷核磁光谱法(〜(31)P NMR)在整个细胞系统中研究了四种生物分类学上明显不同的微生物对膦酸酯除草剂草甘膦(N-膦酰基甲基甘氨酸)的降解作用。在致密细胞培养物中草甘膦代谢的时间过程,通过〜(31)P NMR追踪,直至添加后21天。通过这种非侵入性方式获得的结果证实螺旋藻和链霉菌链霉菌的细胞可生物降解除草剂。此外,磷的饥饿影响了S. platensis对草甘膦的降解速度。另一方面,对绿藻小球藻培养物进行类似测量的结果表明,这种水生植物尽管在含有1 mM N-膦酰基甲基甘氨酸的培养基中生长,但似乎不具备其生物降解能力。此外,使用这种方法使我们能够找到新的真菌菌株二镰孢(Fusarium dimerum),该菌株能够生物降解并利用草甘膦作为唯一的磷源。我们对体内〜(31)P NMR追踪整个细胞系统中草甘膦降解有用性的研究结果表明,这种非侵入性的一步法可能被认为是有机膦酸酯异种生物环境生物技术中的一种有价值的工具。

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