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使用非线性显微镜技术对微生物三萜类化合物生产进行非侵入性监测。

Non-invasive monitoring of microbial triterpenoid production using nonlinear microscopy techniques.

作者信息

Dianat Mariam, Münchberg Ute, Blank Lars M, Freier Erik, Ebert Birgitta E

机构信息

Institute of Applied Microbiology (iAMB), Aachen Biology and Biotechnology (ABBt), RWTH Aachen University, Aachen, Germany.

University Development and Strategy, Ruhr University Bochum, Bochum, Germany.

出版信息

Front Bioeng Biotechnol. 2023 Feb 28;11:1106566. doi: 10.3389/fbioe.2023.1106566. eCollection 2023.

Abstract

Bioproduction of plant-derived triterpenoids in recombinant microbes is receiving great attention to make these biologically active compounds industrially accessible as nutraceuticals, pharmaceutics, and cosmetic ingredients. So far, there is no direct method for detecting triterpenoids under physiological conditions on a cellular level, information yet highly relevant to rationalizing microbial engineering. Here, we show in a proof-of-concept study, that triterpenoids can be detected and monitored in living yeast cells by combining coherent anti-Stokes Raman scattering (CARS) and second-harmonic-generation (SHG) microscopy techniques. We applied CARS and SHG microscopy measurements, and for comparison classical Nile Red staining, on immobilized and growing triterpenoid-producing, and non-producing reference strains. We found that the SHG signal in triterpenoid-producing strains is significantly higher than in a non-producing reference strain, correlating with lipophile content as determined by Nile red staining. In growing cultures, both CARS and SHG signals showed changes over time, enabling new insights into the dynamics of triterpenoid production and storage inside cells.

摘要

利用重组微生物进行植物源三萜类化合物的生物生产正备受关注,以便使这些生物活性化合物能够作为营养保健品、药物和化妆品成分在工业上得以获取。到目前为止,还没有在细胞水平的生理条件下检测三萜类化合物的直接方法,而这一信息对于微生物工程的合理化至关重要。在此,我们在一项概念验证研究中表明,通过结合相干反斯托克斯拉曼散射(CARS)和二次谐波产生(SHG)显微镜技术,可以在活酵母细胞中检测和监测三萜类化合物。我们对固定化的和正在生长的三萜类化合物生产菌株以及非生产参考菌株进行了CARS和SHG显微镜测量,并与经典的尼罗红染色法进行比较。我们发现,生产三萜类化合物的菌株中的SHG信号显著高于非生产参考菌株,这与尼罗红染色测定的亲脂性含量相关。在生长培养物中,CARS和SHG信号均随时间发生变化,从而能够对细胞内三萜类化合物的生产和储存动态有新的认识。

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