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泥炭生物滤池中微生物群落的空间结构与挥发性有机化合物复杂混合物降解之间的联系

Link between spatial structure of microbial communities and degradation of a complex mixture of volatile organic compounds in peat biofilters.

作者信息

Khammar N, Malhautier L, Degrange V, Lensi R, Godon J-J, Fanlo J-L

机构信息

Laboratoire Génie de l'Environnement Industriel, Ecole des Mines d'Alès, Ales cedex, France.

出版信息

J Appl Microbiol. 2005;98(2):476-90. doi: 10.1111/j.1365-2672.2004.02474.x.

Abstract

AIMS

To investigate the relationships between the operation of the volatile organic compound (VOC) removal biofilter and the structure of microbial communities, and to study the impact on degradation activities and the structuring of microbial communities of biofilter malfunctions related to the qualitative composition of the polluted air.

METHODS AND RESULTS

A microbiological study and a measurement of biodegradation activities were simultaneously carried out on two identical peat-packed columns, seeded with two different inocula, treating polluted air containing 11 VOCs. For both reactors, the spatial structure of the microbial communities was investigated by means of single-strand conformation polymorphism (SSCP) analysis. For both reactors, stratification of degradation activities in function of depth was observed. Oxygenated compounds were removed at the top of the column and aromatics at the bottom. Comparison of SSCP patterns clearly showed a shift in community structure in function of depth inside both biofilters. This distribution of biodegradation activities correlates with the spatialization of microbial density and diversity. Although the operating conditions of both reactors were identical and the biodegradation activities similar, the composition of microflora differed for biofilters A and B. Subdivision of biofilter B into two independent parts supplied with polluted air containing the complex VOC mixture showed that the microflora having colonized the bottom of biofilter B retained their potential for degrading oxygenated compounds.

CONCLUSIONS

This work highlights the spatialization of biodegradation functions in a biofilter treating a complex mixture of VOCs. This distribution of biodegradation activities correlates with the spatialization of microbial density and diversity.

SIGNIFICANCE AND IMPACT OF THE STUDY

This vertical structure of microbial communities must be taken into consideration when dealing with the malfunctioning of bioreactors. These results are also useful information about changes in microbial communities following natural or anthropogenic alterations in different ecosystems (soils and sediments) where structuring of microbial communities according to depth has been observed.

摘要

目的

研究挥发性有机化合物(VOC)去除生物滤池的运行与微生物群落结构之间的关系,并探讨与污染空气定性组成相关的生物滤池故障对微生物群落降解活性和结构的影响。

方法与结果

在两个相同的填充泥炭柱上同时进行微生物研究和生物降解活性测量,这两个柱子接种了两种不同的接种物,用于处理含有11种VOC的污染空气。对于两个反应器,通过单链构象多态性(SSCP)分析研究微生物群落的空间结构。对于两个反应器,均观察到降解活性随深度的分层现象。含氧化合物在柱顶被去除,芳烃在柱底被去除。SSCP图谱的比较清楚地表明,两个生物滤池内部微生物群落结构随深度发生了变化。这种生物降解活性的分布与微生物密度和多样性的空间分布相关。尽管两个反应器的运行条件相同且生物降解活性相似,但生物滤池A和B的微生物区系组成不同。将生物滤池B细分为两个独立部分,分别供应含有复杂VOC混合物的污染空气,结果表明,在生物滤池B底部定殖的微生物区系仍保留其降解含氧化合物的潜力。

结论

本研究突出了生物滤池处理复杂VOC混合物时生物降解功能的空间分布。这种生物降解活性的分布与微生物密度和多样性的空间分布相关。

研究的意义和影响

在处理生物反应器故障时,必须考虑微生物群落的这种垂直结构。这些结果对于了解不同生态系统(土壤和沉积物)中自然或人为改变后微生物群落的变化也具有重要意义,在这些生态系统中已观察到微生物群落按深度构建的现象。

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