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用于研究厌氧烃降解及降解菌的稳定同位素探测方法

Stable Isotope Probing Approaches to Study Anaerobic Hydrocarbon Degradation and Degraders.

作者信息

Vogt Carsten, Lueders Tillmann, Richnow Hans H, Krüger Martin, von Bergen Martin, Seifert Jana

机构信息

Department of Isotope Biogeochemistry, UFZ - Helmholtz Centre for Environmental Research, Leipzig, Germany.

出版信息

J Mol Microbiol Biotechnol. 2016;26(1-3):195-210. doi: 10.1159/000440806. Epub 2016 Mar 10.

DOI:10.1159/000440806
PMID:26959525
Abstract

Stable isotope probing (SIP) techniques have become state-of-the-art in microbial ecology over the last 10 years, allowing for the targeted detection and identification of organisms, metabolic pathways and elemental fluxes active in specific processes within complex microbial communities. For studying anaerobic hydrocarbon-degrading microbial communities, four stable isotope techniques have been used so far: DNA/RNA-SIP, PLFA (phospholipid-derived fatty acids)-SIP, protein-SIP, and single-cell-SIP by nanoSIMS (nanoscale secondary ion mass spectrometry) or confocal Raman microscopy. DNA/RNA-SIP techniques are most frequently applied due to their most meaningful phylogenetic resolution. Especially using 13C-labeled benzene and toluene as model substrates, many new hydrocarbon degraders have been identified by SIP under various electron acceptor conditions. This has extended the current perspective of the true diversity of anaerobic hydrocarbon degraders relevant in the environment. Syntrophic hydrocarbon degradation was found to be a common mechanism for various electron acceptors. Fundamental concepts and recent advances in SIP are reflected here. A discussion is presented concerning how these techniques generate direct insights into intrinsic hydrocarbon degrader populations in environmental systems and how useful they are for more integrated approaches in the monitoring of contaminated sites and for bioremediation.

摘要

在过去十年中,稳定同位素探测(SIP)技术已成为微生物生态学的前沿技术,能够有针对性地检测和识别复杂微生物群落中特定过程中活跃的生物体、代谢途径和元素通量。到目前为止,已有四种稳定同位素技术用于研究厌氧烃降解微生物群落:DNA/RNA-SIP、PLFA(磷脂衍生脂肪酸)-SIP、蛋白质-SIP以及通过纳米二次离子质谱(nanoSIMS)或共聚焦拉曼显微镜进行的单细胞-SIP。DNA/RNA-SIP技术因其最有意义的系统发育分辨率而应用最为频繁。特别是以13C标记的苯和甲苯作为模型底物,通过SIP在各种电子受体条件下已鉴定出许多新的烃降解菌。这扩展了目前对环境中相关厌氧烃降解菌真实多样性的认识。发现互营烃降解是各种电子受体的常见机制。本文阐述了SIP的基本概念和最新进展。讨论了这些技术如何直接洞察环境系统中内在的烃降解菌种群,以及它们在监测污染场地和生物修复的更综合方法中的实用性。

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