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Exploring the glyphosate-degrading characteristics of a newly isolated, highly adapted indigenous bacterial strain, Providencia rettgeri GDB 1

机译:探索新分离,高度适应的土着细菌菌株的草甘膦降解特征,Providencia Rettgeri GDB 1

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摘要

This study explored the characteristics of a newly isolated glyphosate (GLYP)-degrading bacterium Providencia rettgeri GDB 1, for GLYP bioremediation. Due to the serial selection pressure of high GLYP concentrations for enriched isolation, this highly tolerant GLYP biodegrader shows very promising capabilities for GLYP removal (approximately 71.4% degradation efficiency) compared to previously reported strains. High performance liquid chromatography analyses showed aminomethylphosphonic acid (AMPA) rather than sarcosine (SAR) to be the sole intermediate of GLYP decomposition via the AMPA formation pathway. Moreover, GLYP biodegradation was biochemically favorable in aerobic cultures due to its strong growth-associated characteristics. To the best of our knowledge, this is the first report to indicate that bacterial strains in the Providencia genus could demonstrate highly promising GLYP-degrading characteristics in environments with high GLYP contents. (C) 2019, The Society for Biotechnology, Japan. All rights reserved.
机译:本研究探讨了新分离的草甘膦(GLYP) - 凝视细菌普罗茨系列Rettgeri GDB 1的特征,用于GLYP生物化。由于高甘醇浓度的富集分离的连续选择压力,这种高度耐受性的甘油生物学家显示出与先前报道的菌株相比的甘醇去除(降解效率约71.4%)的非常有前途的能力。高效液相色谱分析显示氨基甲基膦酸(AMPA)而不是Sarcosine(SAR)通过AMPA形成途径是甘醇分解的唯一中间体。此外,由于其强烈的生长相关特征,GLYP生物降解在有氧培养物中生物化学良好。据我们所知,这是第一个表明Providencia属中细菌菌株的报告可以在具有高甘醇含量的环境中表现出高度有前景的甘蓬松降解特征。 (c)2019年,日本生物技术协会。版权所有。

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