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纳米二次离子质谱在单细胞水平分析微生物代谢活性中的应用综述

A critical review of NanoSIMS in analysis of microbial metabolic activities at single-cell level.

机构信息

a State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology , Harbin , P.R. China.

出版信息

Crit Rev Biotechnol. 2016 Oct;36(5):884-90. doi: 10.3109/07388551.2015.1057550. Epub 2015 Jul 15.

Abstract

Over 3.8 billion years of evolution has enabled many microbial species a versatile metabolism. However, limited by experimental methods, some unique metabolism remains unknown or unclear. A major obstacle is to attribute the incorporation of certain nutrients into a noncultivable species out of a complex microbial community. Such difficulty could be solved if we are able to directly observe substrate uptake at the single-cell level. Nanoscale secondary ion mass spectrometry (NanoSIMS) is a powerful tool for revealing element distribution in nanometer-scale resolution in the fields such as material sciences, geosciences and astronomy. In this review, we focus on another applicability of NanoSIMS in microbiology. In such fields, physiological properties and metabolic activities of microorganisms can be revealed with a single-cell scale resolution by NanoSIMS solely or in combination with other techniques. This review will highlight the features of NanoSIMS in analyzing the metabolic activities of carbon, nitrogen, metal irons by mixed-culture assemblies. Some values of NanoSIMS in environmental microbiology are expected to be discussed via this review.

摘要

经过 38 亿年的进化,许多微生物物种已经拥有了多功能的新陈代谢。然而,由于实验方法的限制,一些独特的新陈代谢仍然未知或不清楚。一个主要的障碍是将某些营养物质的掺入归因于从复杂的微生物群落中分离出不可培养的物种。如果我们能够在单细胞水平上直接观察到基质的摄取,这种困难就可以得到解决。纳米二次离子质谱(NanoSIMS)是一种强大的工具,可用于揭示材料科学、地球科学和天文学等领域中纳米级分辨率的元素分布。在这篇综述中,我们专注于 NanoSIMS 在微生物学中的另一种应用。在这些领域中,通过 NanoSIMS 或与其他技术结合,可以以单细胞尺度分辨率揭示微生物的生理特性和代谢活性。这篇综述将重点介绍 NanoSIMS 在分析混合培养物中碳、氮、金属铁代谢活性方面的特点。通过这篇综述,我们期望讨论 NanoSIMS 在环境微生物学中的一些价值。

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