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不同堆肥改良剂对工业用地污染土壤中烃类污染的 alkB 基因丰度和细菌群落组成的影响。

Effects of different compost amendments on the abundance and composition of alkB harboring bacterial communities in a soil under industrial use contaminated with hydrocarbons.

机构信息

Research Unit Environmental Genomics, Helmholtz Zentrum München Munich, Germany.

Organic Agricultural Sciences, University of Kassel Witzenhausen, Germany.

出版信息

Front Microbiol. 2014 Mar 13;5:96. doi: 10.3389/fmicb.2014.00096. eCollection 2014.

Abstract

Alkane degrading microorganisms play an important role for the bioremediation of petrogenic contaminated environments. In this study, we investigated the effects of compost addition on the abundance and diversity of bacteria harboring the alkane monooxygenase gene (alkB) in an oil-contaminated soil originated from an industrial zone in Celje, Slovenia (Technosol). Soil without any amendments (control soil) and soil amended with two composts differing in their maturation stage and nutrient availability, were incubated under controlled conditions in a microcosm experiment and sampled after 0, 6, 12, and 36 weeks of incubation. As expected the addition of compost stimulated the degradation of alkanes in the investigated soil shortly after the addition. By using quantitative real-time PCR higher number of alkB genes were detected in soil samples amended with compost compared to the control soils. To get an insight into the composition of alkB harboring microbial communities, we performed next generation sequencing of amplicons of alkB gene fragment. Richness and diversity of alkB gene harboring prokaryotes was higher in soil mixed with compost compared to control soils with stronger effects of the less maturated, nutrient poor compost. The phylogenetic analysis of communities suggested that the addition of compost stimulated the abundance of alkB harboring Actinobacteria during the experiment independent from the maturation stage of the compost. AlkB harboring γ-proteobacteria like Shewanella or Hydrocarboniphaga as well as α-proteobacteria of the genus Agrobacterium responded also positively to the addition of compost to soil. The amendment of the less maturated, nutrient poor compost resulted in addition in a large increase of alkB harboring bacteria of the Cytophaga group (Microscilla) mainly at the early sampling time points. Our data indicates that compost amendments significantly change abundance and diversity pattern of alkB harboring microbes in Technosol and might be a useful agent to stimulate bioremediation of hydrocarbons in contaminated soils.

摘要

烷烃降解微生物在石油污染环境的生物修复中起着重要作用。本研究调查了添加堆肥对烷烃单加氧酶基因(alkB)在斯洛文尼亚采列(Celje)工业区起源的石油污染土壤中细菌丰度和多样性的影响(Technosol)。未添加任何改良剂的土壤(对照土壤)和添加了两种堆肥的土壤,这两种堆肥在成熟度和养分供应方面存在差异,在微宇宙实验中在受控条件下进行培养,并在培养后 0、6、12 和 36 周进行采样。正如预期的那样,添加堆肥后不久,就会刺激所研究土壤中烷烃的降解。通过使用定量实时 PCR,在添加堆肥的土壤样本中检测到更多的 alkB 基因,而对照土壤中则检测到更多的 alkB 基因。为了深入了解含有 alkB 的微生物群落的组成,我们对 alkB 基因片段的扩增子进行了下一代测序。与对照土壤相比,添加堆肥的土壤中含有 alkB 的原核生物的丰富度和多样性更高,而成熟度较低、养分较少的堆肥的影响更强。群落的系统发育分析表明,在实验过程中,添加堆肥刺激了含有 alkB 的放线菌的丰度增加,而与堆肥的成熟度无关。富含 alkB 的γ-变形菌(如希瓦氏菌或噬烃菌)以及α-变形菌(如根瘤菌属)也对向土壤中添加堆肥做出了积极响应。添加不成熟、养分较少的堆肥导致含有 alkB 的细菌数量大量增加,主要是在早期采样时间点,属于 Cytophaga 组(微菌属)。我们的数据表明,堆肥改良剂显著改变了 Technosol 中含有 alkB 的微生物的丰度和多样性模式,可能是刺激受污染土壤中烃类生物修复的有用剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a569/3952045/177ab466c44c/fmicb-05-00096-g0001.jpg

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