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首页> 外文期刊>Applied Microbiology and Biotechnology >Tributyl phosphate biodegradation to butanol and phosphate and utilization by a novel bacterial isolate, Sphingobium sp. strain RSMS
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Tributyl phosphate biodegradation to butanol and phosphate and utilization by a novel bacterial isolate, Sphingobium sp. strain RSMS

机译:磷酸三丁酯可生物降解为丁醇和磷酸盐,并被新型细菌分离物鞘氨醇单胞菌(Sphingobium sp。)利用。应变RSMS

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摘要

A Sphingobium sp. strain isolated from radioactive solid waste management site (RSMS) completely degraded 7.98 g/L of tributyl phosphate (TBP) from TBP containing suspensions in 3 days. It also completely degraded 20 mM dibutyl phosphate (DBP) within 2 days. The strain tolerated high levels of TBP and showed excellent stability with respect to TBP degradation over several repeated subcultures. On solid minimal media or Luria Bertani media supplemented with TBP, the RSMS strain showed a clear zone of TBP degradation around the colony. Gas chromatography and spectrophotometry analyses identifiedDBP as the intermediate and butanol and phosphate as the products of TBP biodegradation. The RSMS strain utilized both TBP andDBP as the sole source of carbon and phosphorous for its growth. The butanol released was completely utilized by the strain as a carbon source thereby leaving no toxic residue in the medium. Degradation of TBP or DBP was found to be suppressed by high concentration of glucose which also inhibited TBP or DBP dependent growth. The results highlight the potential of Sphingobium sp. strain RSMS for bioremediation of TBP and for further molecular investigation
机译:鞘氨醇单胞菌从放射性固体废物管理站点(RSMS)分离出的SSR菌株在3天内从含有TBP的悬浮液中完全降解了7.98 g / L磷酸三丁酯(TBP)。它也可以在2天内完全降解20 mM磷酸二丁酯(DBP)。该菌株耐受高水平的TBP,并且在多次重复的继代培养中表现出优异的TBP降解稳定性。在固体基本培养基或补充了TBP的Luria Bertani培养基上,RSMS菌株在菌落周围显示了一个清晰的TBP降解区。气相色谱和分光光度法分析确定DBP为中间体,丁醇和磷酸盐为TBP生物降解产物。 RSMS菌株利用TBP和DBP作为其生长的唯一碳和磷源。释放出的丁醇被菌株完全用作碳源,因此在培养基中没有残留毒物。发现高浓度的葡萄糖抑制了TBP或DBP的降解,这也抑制了TBP或DBP依赖性生长。结果突出了鞘氨醇单胞菌的潜力。 RSMS菌株用于TBP的生物修复和进一步的分子研究

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