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通过无标记表面增强拉曼光谱(SERS)区分密切相关的橡树相关革兰氏阴性细菌。

Differentiation of Closely Related Oak-Associated Gram-Negative Bacteria by Label-Free Surface Enhanced Raman Spectroscopy (SERS).

作者信息

Vaitiekūnaitė Dorotėja, Snitka Valentinas

机构信息

Laboratory of Forest Plant Biotechnology, Institute of Forestry, Lithuanian Research Centre for Agriculture and Forestry, Liepų Str. 1, Girionys, 53101 Kaunas, Lithuania.

Research Center for Microsystems and Nanotechnology, Kaunas University of Technology, Studentu Str. 65, 51369 Kaunas, Lithuania.

出版信息

Microorganisms. 2021 Sep 16;9(9):1969. doi: 10.3390/microorganisms9091969.

Abstract

Due to the harmful effects of chemical fertilizers and pesticides, the need for an eco-friendly solution to improve soil fertility has become a necessity, thus microbial biofertilizer research is on the rise. Plant endophytic bacteria inhabiting internal tissues represent a novel niche for research into new biofertilizer strains. However, the number of species and strains that need to be differentiated and identified to facilitate faster screening in future plant-bacteria interaction studies, is enormous. Surface enhanced Raman spectroscopy (SERS) may provide a platform for bacterial discrimination and identification, which, compared with the traditional methods, is relatively rapid, uncomplicated and ensures high specificity. In this study, we attempted to differentiate 18 bacterial isolates from two oaks via morphological, physiological, biochemical tests and SERS spectra analysis. Previous gene fragment sequencing showed that three isolates belong to , 3-to and 12-to genera. Additional tests were not able to further sort these bacteria into strain-specific groups. However, the obtained label-free SERS bacterial spectra along with the high-accuracy principal component (PCA) and discriminant function analyses (DFA) demonstrated the possibility to differentiate these bacteria into variant strains. Furthermore, we collected information about the biochemical characteristics of selected isolates. The results of this study suggest a promising application of SERS in combination with PCA/DFA as a rapid, non-expensive and sensitive method for the detection and identification of plant-associated bacteria.

摘要

由于化肥和农药的有害影响,需要一种生态友好型解决方案来提高土壤肥力,因此微生物生物肥料的研究正在兴起。栖息于植物内部组织的植物内生细菌代表了一个研究新型生物肥料菌株的新领域。然而,在未来的植物-细菌相互作用研究中,为了便于更快地筛选而需要区分和鉴定的物种和菌株数量巨大。表面增强拉曼光谱(SERS)可能为细菌的区分和鉴定提供一个平台,与传统方法相比,它相对快速、简便且具有高特异性。在本研究中,我们试图通过形态学、生理学、生化测试以及SERS光谱分析来区分从两棵橡树中分离出的18株细菌。先前的基因片段测序表明,三株分离物分别属于 、3- 以及12- 属。额外的测试无法将这些细菌进一步分类为特定菌株组。然而,所获得的无标记SERS细菌光谱以及高精度主成分(PCA)和判别函数分析(DFA)表明,有可能将这些细菌区分为不同的菌株。此外,我们收集了所选分离物的生化特性信息。本研究结果表明,SERS与PCA/DFA相结合作为一种快速、廉价且灵敏的检测和鉴定植物相关细菌的方法具有广阔的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6975/8466144/d35404940d43/microorganisms-09-01969-g001.jpg

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