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Biodegradation of isoproturon by Pseudoxanthomonas sp. isolated from herbicide-treated wheat fields of Tarai agro-ecosystem Pantnagar

机译:假黄单胞菌属物种对异丙隆的生物降解作用。分离自Pantnagar Tarai农业生态系统的除草剂处理过的麦田

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摘要

A gram-negative, rod-shaped, isoproturon (IPU) utilizing bacterium was isolated from herbicide-applied wheat fields of Tarai agro-ecosystem, Pantnagar. The phylogenetic sequence analysis based on 16S rRNA sequence revealed that the isolate could be a distinct species within the genus Pseudomonas. The isolate was a close relative of Pseudoxanthomonas japonensis (95 % similarity) and designated as K2. The bacterial isolate showed positive reaction for oxidase, catalase, and 20 carbohydrates using KB009 Part A and B HiCarbohydrate™ Kit. Degradation experiments were conducted using 200 mg l−1 initial IPU as a source of carbon at different pH and temperatures. Maximum IPU degradation by K2 was observed at pH 7.0 and 30 °C, while least degradation at 6.5 pH and 25 °C. Addition of dextrose along with IPU as an auxiliary carbon source increased IPU degradation by 4.72 %, as compared to the IPU degradation without dextrose under optimum conditions. 4-isopropylaniline was detected as a degradation by-product in the medium. The present study demonstrated the IPU metabolizing capacity of a novel bacterial isolate K2 that can be a better choice for the remediation of IPU-contaminated sites.
机译:从Pantnagar的Tarai农业生态系统的除草剂施用的麦田中分离出了一种革兰氏阴性,杆状,异养素细菌(IPU)。基于16S rRNA序列的系统发育序列分析表明,该分离株可能是假单胞菌属中的不同物种。分离株是日本假单胞菌的近亲(95%相似性),命名为K2。使用KB009 A部分和B部分HiCarbohydrate™试剂盒,细菌分离株对氧化酶,过氧化氢酶和20种碳水化合物表现出阳性反应。使用200 mg l −1 初始IPU作为不同pH和温度下的碳源进行降解实验。在pH 7.0和30°C时观察到最大的IPU被K2降解,而在6.5 pH和25°C时降解最小。与在最佳条件下不使用葡萄糖的IPU降解相比,与IPU一起添加葡萄糖作为辅助碳源可将IPU降解提高4.72%。在培养基中检测到4-异丙基苯胺作为降解副产物。本研究证明了新型细菌分离物K2的IPU代谢能力,可以作为修复IPU污染位点的更好选择。

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