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首页> 外文期刊>Biotemas >The effect of rhizosphere on growth of Sphingomonas chlorophenolica ATCC 39723 during pentachlorophenol (PCP) biodegradation in batch culture and soil
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The effect of rhizosphere on growth of Sphingomonas chlorophenolica ATCC 39723 during pentachlorophenol (PCP) biodegradation in batch culture and soil

机译:在分批培养和土壤中五氯苯酚(PCP)生物降解过程中,根际对五味子藻ATCC 39723生长的影响

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摘要

Studies on the influence of the rhizosphere on the growth of Sphingo- monas chlorophenolica during. Pentacholophenol (PCP) degradation in batch culture and in soil were carried out. In batch culture, a basal minimal medium with or without rhizosphere exudates extracted from winter wheat was used. In soil systems, degradation experiments were performed in the presence and absence of plants. Measurements of PCP concentrations were made using high performance liquid chroma- tography analysis (HPLC). Bacterial analyses of S. chlorophenolica were carried out by plating on MSM medium. The results showed that the rhizosphere exudates stimulated the growth of the cells of S. chlorophe- nolica at concentrations of 50 and 80mg kg dry wt soil –1 as well as stimu- lating the ability of S. chlorophenolica to degrade PCP at a concentration of 80mg Kg dry wt soil -1. In addition, pentachlorophenol had an adverse effect on the growth of S. chlorophenolica. The introduction of S. chlorop- henolica into the loamy soil with plants showed a faster degradation when compared to the inocu- lated soil without plants. There was a significant increase of S. chloroph- enolica in the roots in comparison to those in thesoil. This study showed that the presence of the inoculum S. chlorophe nolica enhanced the PCP degradation in a loamy soil and it indicates the potential for a treatment process under a appropriate environmental conditions such as there present in soil systems.
机译:研究了根际对氯芬藻(Sphingomonas chlorophenolica)生长过程的影响。进行了分批培养和土壤中五氯苯酚(PCP)的降解。在分批培养中,使用基本基础培养基,有或没有从冬小麦中提取的根际渗出液。在土壤系统中,在有无植物的情况下进行了降解实验。使用高效液相色谱分析(HPLC)进行PCP浓度的测量。氯酚链球菌的细菌分析是通过在MSM培养基上铺板进行的。结果表明,在50和80 mg kg干重土壤–1的浓度下,根际渗出液刺激了S. chlorophenolica细胞的生长,并刺激了S. chlorophenolica降解PCP的能力。 80mg Kg干重土壤-1。此外,五氯苯酚对S. chlorophenolica的生长有不利影响。与没有植物的接种土壤相比,在有植物的壤土中引入氯霉素链菌降解速度更快。与土壤中的相比,根中的S. chlorophenolica显着增加。这项研究表明,接种链霉菌Nolica的存在会增强壤土中PCP的降解,这表明在适当的环境条件下(如土壤系统中存在的条件)进行处理的潜力。

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