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利用动态定量斜向背照显微镜对根相关微生物进行无标记功能分析。

Label-free functional analysis of root-associated microbes with dynamic quantitative oblique back-illumination microscopy.

机构信息

George W. Woodruff School of Mechanical Engineering, Georgia Institute of Technology, Atlanta, GA, 30318, USA.

School of Biological Sciences, Georgia Institute of Technology, Atlanta, GA, 30318, USA.

出版信息

Sci Rep. 2024 Mar 9;14(1):5812. doi: 10.1038/s41598-024-56443-1.

Abstract

The increasing global demand for food, coupled with concerns about the environmental impact of synthetic fertilizers, underscores the urgency of developing sustainable agricultural practices. Nitrogen-fixing bacteria, known as diazotrophs, offer a potential solution by converting atmospheric nitrogen into bioavailable forms, reducing the reliance on synthetic fertilizers. However, a deeper understanding of their interactions with plants and other microbes is needed. In this study, we introduce a recently developed label-free 3D quantitative phase imaging technology called dynamic quantitative oblique back-illumination microscopy (DqOBM) to assess the functional dynamic activity of diazotrophs in vitro and in situ. Our experiments involved three different diazotrophs (Sinorhizobium meliloti, Azotobacter vinelandii, and Rahnella aquatilis) cultured on media with amendments of carbon and nitrogen sources. Over 5 days, we observed increased dynamics in nutrient-amended media. These results suggest that the observed bacterial dynamics correlate with their metabolic activity. Furthermore, we applied qOBM to visualize microbial dynamics within the root cap and elongation zone of Arabidopsis thaliana primary roots. This allowed us to identify distinct areas of microbial infiltration in plant roots without the need for fluorescent markers. Our findings demonstrate that DqOBM can effectively characterize microbial dynamics and provide insights into plant-microbe interactions in situ, offering a valuable tool for advancing our understanding of sustainable agriculture.

摘要

全球对食物的需求不断增长,加之人们对合成肥料对环境影响的担忧,凸显了开发可持续农业实践的紧迫性。固氮细菌,即自生固氮菌,通过将大气中的氮转化为生物可利用的形式,为减少对合成肥料的依赖提供了一种潜在的解决方案。然而,需要更深入地了解它们与植物和其他微生物的相互作用。在这项研究中,我们引入了一种最近开发的无标记 3D 定量相衬成像技术,称为动态定量斜向背照明显微镜(DqOBM),以评估自生固氮菌在体外和体内的功能动态活性。我们的实验涉及三种不同的自生固氮菌(根瘤菌、固氮菌和水栖菌),它们在含有碳和氮源的培养基上培养。在 5 天的时间里,我们观察到在添加营养物质的培养基中,细菌的动态增加。这些结果表明,观察到的细菌动态与它们的代谢活性相关。此外,我们将 qOBM 应用于可视化拟南芥主根根冠和伸长区内部微生物的动态。这使得我们能够在不使用荧光标记的情况下,识别植物根内微生物渗透的不同区域。我们的研究结果表明,DqOBM 可以有效地描述微生物动态,并深入了解原位植物-微生物相互作用,为推进可持续农业的理解提供了有价值的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f6e/10925023/687f67f4c321/41598_2024_56443_Fig1_HTML.jpg

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