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[荧光原位杂交-纳米二次离子质谱技术在环境微生物生态学研究中的应用]

[Application of FISH-NanoSIMS technique in environmental microbial ecology study].

作者信息

Chen Chen, Bai Yao-hui, Liang Jin-song, Yuan Lin-jiang

出版信息

Huan Jing Ke Xue. 2015 Jan;36(1):244-51.

PMID:25898671
Abstract

With the development of microbial ecology techniques, it is possible to analyze the distribution and function of microorganisms simultaneously in complex ecosystems. To explore the application of FISH-NanoSIMS in environmental microbial ecology study, our study used the stable isotope labeled compounds 13C-C6H12O6, and 15N-NH4Cl as C and N sources for cultivating the pure culture (manganese oxidizing bacteria, Pseudomonas sp. QJX-1) and environmental samples (the shallow soil and anaerobic sludge). FISH-NanoSIMS was used to detect the distribution of microorganisms and relatively quantify secondary ions (12C-, 13C-, 12C(14)N-, 12C15N-) in cultivated samples, in order to explore the utilization of C and N isotopes sources by the pure culture and microorganisms in environment samples. The results showed that the contents of 13C and 5N in the area of bacteria were significantly greater than the natural abundance in all samples. It indicated that Pseudomonas sp. QJX-1 and some specific bacteria in environmental samples could metabolize 13C-C6H12O6 and 15N-NH4C1. Furthermore, this study revealed that for Pseudomonas sp. QJX-1, the manganese oxidation only occurred when the carbon and nitrogen were consumed to a low level. For environmental samples, the bacterial nitrification and denitrification were both observed in the shallow soil and anaerobic sludge. In a word, our study demonstrated that the combination of FISH and NanoSIMS could simultaneously examine microbial distribution and microbial metabolic activity in environmental samples, which will help us to obtain the eco-physiology information of microbial community.

摘要

随着微生物生态学技术的发展,在复杂生态系统中同时分析微生物的分布和功能成为可能。为了探索荧光原位杂交-纳米二次离子质谱技术(FISH-NanoSIMS)在环境微生物生态学研究中的应用,我们的研究使用稳定同位素标记化合物13C-C6H12O6和15N-NH4Cl作为碳源和氮源,用于培养纯培养物(锰氧化细菌,假单胞菌属QJX-1)和环境样品(浅层土壤和厌氧污泥)。利用FISH-NanoSIMS检测培养样品中微生物的分布,并相对定量二次离子(12C-、13C-、12C(14)N-、12C15N-),以探索纯培养物和环境样品中的微生物对碳和氮同位素源的利用情况。结果表明,所有样品中细菌区域的13C和15N含量均显著高于自然丰度。这表明假单胞菌属QJX-1和环境样品中的一些特定细菌能够代谢13C-C6H12O6和15N-NH4C1。此外,本研究还表明,对于假单胞菌属QJX-1,只有当碳和氮消耗到较低水平时才会发生锰氧化。对于环境样品,在浅层土壤和厌氧污泥中均观察到细菌的硝化作用和反硝化作用。总之,我们的研究表明,FISH和NanoSIMS的结合可以同时检测环境样品中的微生物分布和微生物代谢活性,这将有助于我们获取微生物群落的生态生理学信息。

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