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Linking environmental processes to the in situ functioning of microorganisms by high-resolution secondary ion mass spectrometry (NanoSIMS) and scanning transmission X-ray microscopy (STXM)

机译:通过高分辨率二次离子质谱(NanoSIMS)和扫描透射X射线显微镜(STXM)将环境过程与微生物的原位功能联系起来

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摘要

Environmental microbiology research increasingly focuses on the single microbial cell as the defining entity that drives environmental processes. The interactions of individual microbial cells with each other, the environment and with higher organisms shape microbial communities and control the functioning of whole ecosystems. A single-cell view of microorganisms in their natural environment requires analytical tools that measure both cell function and chemical speciation at the submicrometre scale. Here we review the technical capabilities and limitations of high-resolution secondary ion mass spectrometry (NanoSIMS) and scanning transmission (soft) X-ray microscopy (STXM) and give examples of their applications. Whereas NanoSIMS can be combined with isotope-labelling, thereby localizing the distribution of cellular activities (e.g. carbonitrogen fixation/turnover), STXM provides information on the location and chemical speciation of metabolites and products of redox reactions. We propose the combined use of both techniques and discuss the technical challenges of their joint application. Both techniques have the potential to enhance our understanding of cellular mechanisms and activities that contribute to microbially mediated processes, such as the biogeochemical cycling of elements, the transformation of contaminants and the precipitation of mineral phases.
机译:环境微生物学研究越来越关注单一微生物细胞,作为驱动环境过程的决定性实体。单个微生物细胞彼此之间,环境以及与较高生物体之间的相互作用形成了微生物群落并控制了整个生态系统的功能。要在自然环境中对微生物进行单细胞观察,就需要分析工具来测量亚微米级的细胞功能和化学形态。在这里,我们回顾了高分辨率二次离子质谱(NanoSIMS)和扫描透射(软)X射线显微镜(STXM)的技术能力和局限性,并举例说明了它们的应用。 NanoSIMS可以与同位素标记结合使用,从而定位细胞活性的分布(例如碳/氮固定/周转),而STXM提供有关代谢物和氧化还原反应产物的位置和化学形态的信息。我们建议将两种技术结合使用,并讨论它们共同应用的技术挑战。两种技术都有可能增强我们对有助于微生物介导的过程的细胞机制和活性的理解,例如元素的生物地球化学循环,污染物的转化和矿物相的沉淀。

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