Qing Chi, Jie Tang, Changqing Ji, Shan Chen, Qinquan Chen, Meikai Zeng, JiXing Cao, Shenxia Sun, Deron R. Herr, Qing-Gao Zhang, Zumin Wang, Chun-Ming Huang
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The spectra of the electrical signals generated by these two probiotic bacteria were highly distinguishable. We evaluated the importance of these differences with the application of a self-attention mechanism, a deep learning-based module, revealing several unique signals in the electrical spectra of <i>L. mesenteroides</i> as well as <i>L. lactis</i> bacteria. The specific electrical spectrum for each probiotic bacterium provided a dynamic signature for evaluation of the efficacy of various therapies using probiotics, antibiotics, and fecal microbiota transplantation in the future.</p><p>• <i> The electrical signals produced by probiotic bacteria L. mesenteroides and L. lactis on chicken egg chorioallantoic membranes and in the mouse intestine lumen were detectable.</i></p><p>• <i> In the presence of glucose, L. lactis yielded higher electricity than L. mesenteroides in vitro. 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引用次数: 0
摘要
我们制作了一种自组装电路,用于检测两种电生益生菌[介孔芽孢杆菌(Leuconostoc mesenteroides,L. mesenteroides)和乳酸乳球菌(L. lactis)]在鸡卵绒毛膜和小鼠肠腔中产生的电信号。将 L. mesenteroides 或 L. lactis 加上葡萄糖接种到铁嗪试验中,可将铁离子还原成亚铁离子,并形成铁嗪复合物,这表明细菌产生了电子。在葡萄糖存在的情况下,乳酸杆菌在体外产生的电量(以电压变化来衡量)高于间肠酵母菌。这两种益生菌产生的电信号的光谱差异很大。我们通过应用基于深度学习模块的自我注意机制来评估这些差异的重要性,结果发现介壳虫和乳杆菌的电光谱中都有几个独特的信号。每种益生菌的特定电谱都提供了一个动态特征,用于评估未来使用益生菌、抗生素和粪便微生物群移植的各种疗法的疗效。此外,这两种细菌产生的电光谱也不同。
Profiling electric signals of electrogenic probiotic bacteria using self-attention analysis
We fabricated a self-assembled electric circuit to detect the electrical signals produced by two electrogenic probiotic bacteria [Leuconostoc mesenteroides (L. mesenteroides) and Lactococcus lactis (L. lactis)] on chicken egg chorioallantoic membranes as well as in the intestine lumen of mice. Inoculation of L. mesenteroides or L. lactis plus glucose onto a ferrozine assay triggered the reduction of ferric ions to ferrous ions and the formation of ferrozine complexes, indicating the bacterial electron production. In the presence of glucose, L. lactis yielded higher electricity, measured by voltage changes, than L. mesenteroides in vitro. The spectra of the electrical signals generated by these two probiotic bacteria were highly distinguishable. We evaluated the importance of these differences with the application of a self-attention mechanism, a deep learning-based module, revealing several unique signals in the electrical spectra of L. mesenteroides as well as L. lactis bacteria. The specific electrical spectrum for each probiotic bacterium provided a dynamic signature for evaluation of the efficacy of various therapies using probiotics, antibiotics, and fecal microbiota transplantation in the future.
• The electrical signals produced by probiotic bacteria L. mesenteroides and L. lactis on chicken egg chorioallantoic membranes and in the mouse intestine lumen were detectable.
• In the presence of glucose, L. lactis yielded higher electricity than L. mesenteroides in vitro. Furthermore, the electrical spectra generated by these two bacteria were different.
• The importance of these differences with the application of a self-attention mechanism revealed several unique signals in the electrical spectra.
期刊介绍:
Applied Microbiology and Biotechnology focusses on prokaryotic or eukaryotic cells, relevant enzymes and proteins; applied genetics and molecular biotechnology; genomics and proteomics; applied microbial and cell physiology; environmental biotechnology; process and products and more. The journal welcomes full-length papers and mini-reviews of new and emerging products, processes and technologies.