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金属氧化物、粘土矿物和木炭决定了成熟人工土壤中微生物群落的组成及其对菲的响应。

Metal oxides, clay minerals and charcoal determine the composition of microbial communities in matured artificial soils and their response to phenanthrene.

机构信息

Julius Kühn-Institut, Federal Research Centre for Cultivated Plants, Institute for Epidemiology and Pathogen Diagnostics, Braunschweig, Germany.

出版信息

FEMS Microbiol Ecol. 2013 Oct;86(1):3-14. doi: 10.1111/1574-6941.12058. Epub 2013 Jan 21.

Abstract

Microbial communities in soil reside in a highly heterogeneous habitat where diverse mineral surfaces, complex organic matter and microorganisms interact with each other. This study aimed to elucidate the long-term effect of the soil mineral composition and charcoal on the microbial community composition established in matured artificial soils and their response to phenanthrene. One year after adding sterile manure to different artificial soils and inoculating microorganisms from a Cambisol, the matured soils were spiked with phenanthrene or not and incubated for another 70 days. 16S rRNA gene and internal transcribed spacer fragments amplified from total community DNA were analyzed by denaturing gradient gel electrophoresis. Metal oxides and clay minerals and to a lesser extent charcoal influenced the microbial community composition. Changes in the bacterial community composition in response to phenanthrene differed depending on the mineral composition and presence of charcoal, while no shifts in the fungal community composition were observed. The abundance of ring-hydroxylating dioxygenase genes was increased in phenanthrene-spiked soils except for charcoal-containing soils. Here we show that the formation of biogeochemical interfaces in soil is an ongoing process and that different properties present in artificial soils influenced the bacterial response to the phenanthrene spike.

摘要

土壤中的微生物群落栖息在高度异质的生境中,其中多样的矿物质表面、复杂的有机物和微生物相互作用。本研究旨在阐明土壤矿物质组成和木炭对成熟人工土壤中微生物群落组成的长期影响,以及它们对菲的响应。在向不同人工土壤中添加无菌粪肥并从一个耕层土壤接种微生物一年后,成熟土壤中添加或不添加菲,并再培养 70 天。通过变性梯度凝胶电泳分析从总群落 DNA 扩增的 16S rRNA 基因和内部转录间隔区片段。金属氧化物和粘土矿物,以及在较小程度上的木炭,影响了微生物群落组成。细菌群落组成对菲的响应变化取决于矿物质组成和木炭的存在,而真菌群落组成没有观察到变化。除了含木炭的土壤外,菲添加土壤中环羟基化双加氧酶基因的丰度增加。在这里,我们表明,土壤中生物地球化学界面的形成是一个持续的过程,并且人工土壤中存在的不同性质影响了细菌对菲添加的响应。

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