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Co-metabolic degradation of benzo(e)pyrene by halophilic bacterial consortium at different saline conditions

机译:嗜盐菌财团在不同盐度条件下共代谢降解苯并(e)py

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Polyaromatic hydrocarbons (PAHs) with high molecular weight (more than three benzene rings) were difficult to degrade in saline environment. The present study details about the bacterial consortium enriched from industrial sludge from salt manufacturing company, Tuticorin, Tamilnadu (India), which was capable of degrading 1,4 dioxane (Emerging micropollutant) and also phenanthrene as sole carbon source under saline condition. The halophilic bacterial consortium was able to degrade low molecular weight (LMW) phenanthrene, but unable to degrade high molecular weight (HMW) benzo(e)pyrene. To overcome this problem, phenanthrene was added as co-substrate along with benzo(e)pyrene which enhanced the biodegradation process by co-metabolism under saline conditions. The consortium potentially degraded 80% and 99% of benzo(e)pyrene in 7 days and phenanthrene in 5 days at 30 g I~(-1) of NaCI concentration. When the saline concentration increased to 60 g I~(-1), degradation of phenanthrene (97% in 8 days) and benzo(e)pyrene (65% in 10 days) was observed. Further increase in saline concentration to 90 g I~(-1) of NaCI showed reduction in the percent degradation of phenanthrene and benzo(e)pyrene leads to 30.3% and 9% respectively in 6 days. Potential bacterial strains, present in PAHs degrading bacterial consortium were identified as Achromobacter sp. AYS3 (JQ419751), Marinobacter sp. AYS4 (JQ419752) and Rhodanobacter sp. AYS5 (JQ419753). The present study details about the effect of salinity on PAHs degradation and vital role of co-metabolism on biodegradation of benzo(e)pyrene with phenanthrene under saline conditions.
机译:具有高分子量(三个以上苯环)的聚芳烃(PAHs)在盐环境中很难降解。本研究详细介绍了从印度泰米尔纳德州杜蒂戈林盐业制造公司的工业污泥中富集的细菌财团,该财团能够在盐水条件下降解1,4二恶烷(新兴的微污染物)以及菲作为唯一碳源。嗜盐细菌财团能够降解低分子量(LMW)菲,但不能降解高分子量(HMW)苯并(e)re。为了克服这个问题,菲与苯并(e)py一起作为共底物加入,后者在盐分条件下通过共代谢增强了生物降解过程。当NaCl浓度为30 g I〜(-1)时,财团可能在7天内降解80%和99%的苯并(e)and,并在5天内降解菲。当盐水浓度增加到60 g I〜(-1)时,观察到菲(8天为97%)和苯并(e)py的降解(10天为65%)。盐水浓度进一步增加到90 g I〜(-1)NaCl,表明菲和苯并(e)re的降解百分率降低,分别在6天内分别达到30.3%和9%。存在于PAHs降解菌群中的潜在细菌菌株被鉴定为无色杆菌属。 AYS3(JQ419751),Marinobacter sp。 AYS4(JQ419752)和Rhodanobacter sp。 AYS5(JQ419753)。本研究详细介绍了盐分对盐度对PAHs降解的影响以及共代谢对苯并(e)with与菲的生物降解的重要作用。

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