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首页> 外文期刊>Microbial Ecology: An International Journal >Effects of the Inoculant Strain Sphingomonas paucimobilis 20006FA on Soil Bacterial Community and Biodegradation in Phenanthrene-contaminated Soil
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Effects of the Inoculant Strain Sphingomonas paucimobilis 20006FA on Soil Bacterial Community and Biodegradation in Phenanthrene-contaminated Soil

机译:接种菌株鞘氨醇单胞菌菌株20006FA对受菲污染的土壤中细菌群落和生物降解的影响

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摘要

The effects of the inoculant strain Sphingomonas paucimobilis 20006FA (isolated from a phenanthrene-contaminated soil) on the dynamics and structure of microbial communities and phenanthrene elimination rate were studied in soil microcosms artificially contaminated with phenanthrene. The inoculant managed to be established from the first inoculation as it was evidenced by denaturing gradient gel electrophoresis analysis, increasing the number of cultivable heterotrophic and PAH-degrading cells and enhancing phenanthrene degradation. These effects were observed only during the inoculation period. Nevertheless, the soil biological activity (dehydrogenase activity and CO production) showed a late increase. Whereas gradual and successive changes in bacterial community structures were caused by phenanthrene contamination, the inoculation provoked immediate, significant, and stable changes on soil bacterial community. In spite of the long-term establishment of the inoculated strain, at the end of the experiment, the bioaugmentation did not produce significant changes in the residual soil phenanthrene concentration and did not improve the residual effects on the microbial soil community.
机译:在人工受菲污染的土壤微观世界中,研究了接种菌菌株鞘氨醇单胞菌20006FA(从受菲污染的土壤中分离)对微生物群落的动力学和结构以及菲消除率的影响。通过变性梯度凝胶电泳分析,增加可培养的异养细胞和PAH降解细胞的数量并促进菲的降解,可以证明接种物是从第一次接种中就建立的。仅在接种期间观察到这些效果。然而,土壤生物活性(脱氢酶活性和一氧化碳产生)显示出后期增加。菲的污染导致细菌群落结构的逐渐变化和连续变化,而接种引起土壤细菌群落的立即,显着和稳定的变化。尽管可以长期建立接种菌株,但在实验结束时,生物强化并没有对残留的土壤菲浓度产生显着变化,也没有改善对微生物土壤群落的残留影响。

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