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Influence of soil contamination with PAH on microbial community dynamics and expression level of genes responsible for biodegradation of PAH and production of rhamnolipids

机译:PAH对土壤污染对PAH生物降解的微生物群落动态及基因表达水平的影响及鼠李醛生产的生物降解

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The aim of this study was to evaluate the effect of bioaugmentation and addition of rhamnolipids on the biodegradation of PAHs in artificially contaminated soil, expression of genes crucial for the biodegradation process (PAHRHD alpha GN, PAHRHD alpha GP), and the synthesis of rhamnolipids as well as population changes in the soil bacterial metabiome. The positive effect of bioaugmentation and addition of rhamnolipids on the bioremediation of the majority of PAHs was confirmed during the early stages of treatment, especially in case of the most structurally complicated compounds. The results of metagenomic analysis indicated that the initial changes in the soil metabiome caused by bioaugmentation diminished after 3 months and that the community structure in treated soil was similar to control. The survival period of bacteria introduced into the soil via bioaugmentation reached a maximum of 3 months. The increased expression of genes observed after addition of PAH into the soil also returned to the initial conditions after 3 months.
机译:本研究的目的是评估生物沉积和加入rhamnolipid对人工污染的土壤中PAH的生物降解的影响,生物降解过程的表达至关重要(Pahrhd Alpha Gn,Pahrhd alpha GP),以及rhamnolipid的合成随着人口群体细菌组成的变化。在治疗的早期阶段确认了生物沉积和添加鼠霉素对大多数PAH的生物修复的积极作用,特别是在最具结构复杂化合物的情况下。分析结果表明,3个月后生物沉积造成的土壤中群体的初始变化,治疗土壤中的群落结构类似于对照。通过生物沉积引入土壤中的细菌的存活期最多3个月。在加入土壤后观察到的基因的表达增加也恢复到3个月后恢复到初始条件下。

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