刘单单, 李春生, 杨贤庆, 陈胜军, 邓建朝, 王悦齐, 李来好. 孔雀石绿降解菌Enterobacter sp. B-20的分离、鉴定和降解特性研究[J]. 南方水产科学, 2018, 14(1): 50-59. DOI: 10.3969/j.issn.2095-0780.2018.01.007
引用本文: 刘单单, 李春生, 杨贤庆, 陈胜军, 邓建朝, 王悦齐, 李来好. 孔雀石绿降解菌Enterobacter sp. B-20的分离、鉴定和降解特性研究[J]. 南方水产科学, 2018, 14(1): 50-59. DOI: 10.3969/j.issn.2095-0780.2018.01.007
LIU Dandan, LI Chunsheng, YANG Xianqing, CHEN Shengjun, DENG Jianchao, WANG Yueqi, LI Laihao. Isolation, identification and degradation characteristics of Enterobacter sp. B-20 from malachite green degradation bacteria[J]. South China Fisheries Science, 2018, 14(1): 50-59. DOI: 10.3969/j.issn.2095-0780.2018.01.007
Citation: LIU Dandan, LI Chunsheng, YANG Xianqing, CHEN Shengjun, DENG Jianchao, WANG Yueqi, LI Laihao. Isolation, identification and degradation characteristics of Enterobacter sp. B-20 from malachite green degradation bacteria[J]. South China Fisheries Science, 2018, 14(1): 50-59. DOI: 10.3969/j.issn.2095-0780.2018.01.007

孔雀石绿降解菌Enterobacter sp. B-20的分离、鉴定和降解特性研究

Isolation, identification and degradation characteristics of Enterobacter sp. B-20 from malachite green degradation bacteria

  • 摘要: 从受孔雀石绿污染的淡水鱼养殖池塘底泥中,筛选到一株孔雀石绿(C23H25ClN2,malachite green,MG)高效降解菌,经16S rRNA基因序列及系统进化树分析,初步鉴定为Enterobacter sp. B-20。采用硼氢化钾(KBH4)还原-高效液相色谱法对Enterobacter sp. B-20的孔雀石绿降解特性进行研究。结果显示,孔雀石绿对菌株的生长有一定抑制作用,24 h内菌株对5~20 mg·L–1孔雀石绿降解率超过97%,12 h内对1~40 mg·L–1孔雀石绿降解率超过82%。菌株的孔雀石绿降解能力随着pH的增加而显著提高,最适降解pH为9。Enterobacter sp. B-20具有较强的耐盐性,在10~40 g·L–1 的氯化钠(NaCl)质量浓度下具有稳定的孔雀石绿降解特性。在高浓度金属离子条件下,Enterobacter sp. B-20表现出较强的耐性及稳定的孔雀石绿降解能力,0.1~1 mmol·L–1铁离子(Fe3+)、0.1~0.5 mmol·L–1铜离子(Cu2+)、0.1 mmol·L–1锰离子(Mn2+)、0.1~1 mmol·L–1铅离子(Pb2+)均能显著提高菌株的孔雀石绿降解率。结果表明,Enterobacter sp. B-20具有在复杂养殖水环境下降解孔雀石绿的应用潜力。

     

    Abstract: A strain with powerful ability of malachite green degradation was screened from the malachite green polluted sediments in freshwater fish culture ponds. The strain was identified as Enterobacter sp. B-20 by 16S rRNA gene sequence and phylogenetic tree analysis. We applied KBH4 reduction-HPLC method to study the malachite green degradation characteristics of Enterobacter sp. B-20. It is showed that malachite green had an inhibitory effect on the growth of Enterobacter sp. B-20. This strain could degrade over 97% malachite green at 5–12 mg·L-1 within 12 h, and the malachite green degradation rate was over 82% at 1–40 mg·L–1 malachite green within 24 h. The malachite green degradation rate significantly increased with increase of pH, and the maximum malachite green degradation rate was found at pH 9. Enterobacter sp. B-20 exhibited high salt tolerance and had stable malachite green degradation at 10–40 g·L–1 NaCl concentration. Enterobacter sp. B-20 showed strong metal ion tolerance and stable malachite green degradation at high concentrations of metal ions. The metal ions including Fe3+at 0.1–1 mmol·L–1, Cu2+ at 0.1–0.5 mmol·L–1, Mn2+ at 0.1 mmol·L–1 and Pb2+ at 0.1–1 mmol·L–1 increased the malachite green degradation rate of Enterobacter sp. B-20 significantly. The results indicate that it is potential to use Enterobacter sp. B-20 for malachite green degradation in complex aquaculture environment.

     

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