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添加Rpf探索细菌群落以增强高盐条件下苯酚降解的新方法。

A New Approach of Rpf Addition to Explore Bacterial Consortium for Enhanced Phenol Degradation Under High Salinity Conditions.

作者信息

Li Ziqiao, Zhang Yunge, Wang Yuyang, Mei Rongwu, Zhang Yu, Hashmi Muhammad Zaffar, Lin Hongjun, Su Xiaomei

机构信息

College of Geography and Environmental Science, Zhejiang Normal University, Yingbin Road 688#, Jinhua, 321004, China.

Environmental Science Research and Design Institute of Zhejiang Province, Hangzhou, 310007, China.

出版信息

Curr Microbiol. 2018 Aug;75(8):1046-1054. doi: 10.1007/s00284-018-1489-x. Epub 2018 Apr 6.

Abstract

Only a small fraction of salt-tolerant phenol-degrading bacteria can be isolated by conventional plate separation methods, because most bacteria in nature are in a viable but non-culturable (VBNC) state. The aims of this study were to screen out more effective functional bacteria using resuscitation-promoting factor (Rpf), and to determine whether a mixed bacterial consortium possesses better phenol-degrading capabilities under high salinity conditions. The results indicated that three strains unique to treatment group with Rpf addition were obtained. A mixed bacterial consortium consisting of two high-efficient strains which belonged to genera Bacillus and Corynebacterium was capable of utilizing phenol as a sole source of carbon at high salinity. Complete degradation of 100 mg/L phenol at 2% NaCl concentration was achieved within 8 h. This study provides new insights into resuscitation of VBNC bacteria for enhanced treatment of phenol-laden saline wastewater.

摘要

由于自然界中的大多数细菌处于活的但不可培养(VBNC)状态,因此通过传统的平板分离方法只能分离出一小部分耐盐性苯酚降解细菌。本研究的目的是使用复苏促进因子(Rpf)筛选出更有效的功能细菌,并确定混合菌群在高盐条件下是否具有更好的苯酚降解能力。结果表明,添加Rpf的处理组获得了三株独特的菌株。由两株高效菌株组成的混合菌群,分别属于芽孢杆菌属和棒杆菌属,能够在高盐度下以苯酚作为唯一碳源。在2%NaCl浓度下,8小时内可将100mg/L苯酚完全降解。本研究为VBNC细菌的复苏提供了新的见解,以加强对含酚含盐废水的处理。

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