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Evolution of Bacterial Community in Experimental Sand Filters: Physiological and Molecular Fingerprints

机译:实验滤砂器中细菌群落的演变:生理和分子指纹。

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Biofilm development in wastewater treatment system by soil infiltration is often mentioned for its participation to purification efficiency and clogging zone formation. It appears necessary to understand its evolution in order to better control the operation of these systems. The objective of this study was to improve knowledge about the temporal evolution of the biofilm structure in the first centimetres of infiltration system. For this purpose, metabolic fingerprints by Biolog EcoPlate™ and molecular fingerprints by Ribosomal Intergenic Spacer Analysis (RISA) were carried out on sand, septic effluent and treated effluent samples from two experimental reactors supplied with different hydraulic loads collected at different times. The metabolic capabilities of sand microflora decreased in time. In the same way, molecular structure of the biofilm community changed and converged to similar structure in time. Principal components analysis on RISA gel revealed a “buffering effect” of the sand filter on the genetic structure of the bacterial community from treated effluent. The kinetics of evolution of the both metabolic and genetic fingerprints showed a reduction of the metabolic and genetic potentials of septic and treated effluents for the same times. The population dynamic within the biofilms appears interesting evidence in the comprehension of the operation of the treatment systems.
机译:人们经常提到通过土壤渗透在废水处理系统中开发生物膜,因为它参与了净化效率和堵塞区的形成。为了更好地控制这些系统的运行,有必要了解其演变。这项研究的目的是提高有关渗透系统第一厘米的生物膜结构随时间变化的知识。为此,对来自两个实验反应器的沙子,化粪池出水和经处理的出水样品进行了Biolog EcoPlate™代谢指纹分析和核糖体间质间隔分析(RISA)分子指纹分析,这些样品在不同时间收集了不同的水力负荷。砂微生物区系的代谢能力随时间下降。同样,生物膜群落的分子结构也随时间变化并趋于相似。在RISA凝胶上进行的主要成分分析表明,滤砂器对处理过的污水中细菌群落的遗传结构具有“缓冲作用”。代谢指纹图谱和遗传指纹图谱的演化动力学表明,化粪池和处理后的污水在同一时间的代谢和遗传势均降低。生物膜内的种群动态似乎是对治疗系统操作理解的有趣证据。

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