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Melanin-Like Pigment Synthesis by Soil Bacillus weihenstephanensis Isolates from Northeastern Poland

机译:波兰东北部土壤魏氏杆菌的黑色素样色素合成

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摘要

Although melanin is known for protecting living organisms from harmful physical and chemical factors, its synthesis is rarely observed among endospore-forming Bacillus cereus sensu lato. Here, for the first time, we reported that psychrotolerant Bacillus weihenstephanensis from Northeastern Poland can produce melanin-like pigment. We assessed physicochemical properties of the pigment and the mechanism of its synthesis in relation to B. weihenstephanensis genotypic and phenotypic characteristics. Electron paramagnetic resonance (EPR) spectroscopy displayed a stable free radical signal of the pigment from environmental isolates which are consistent with the commercial melanin. Fourier transform infrared spectroscopy (FT-IR) and physicochemical tests indicated the phenolic character of the pigment. Several biochemical tests showed that melanin-like pigment synthesis by B. weihenstephanensis was associated with laccase activity. The presence of the gene encoding laccase was confirmed by the next generation whole genome sequencing of one B. weihenstephanensis strain. Biochemical (API 20E and 50CHB tests) and genetic (Multi-locus Sequence Typing, 16S rRNA sequencing, and Pulsed-Field Gel Electrophoresis) characterization of the isolates revealed their close relation to the psychrotrophic B. weihenstephanensis DSMZ 11821 reference strain. The ability to synthesize melanin-like pigment by soil B. weihenstephanensis isolates and their psychrotrophic character seemed to be a local adaptation to a specific niche. Detailed genetic and biochemical analyses of melanin-positive environmental B. weihenstephanensis strains shed some light on the evolution and ecological adaptation of these bacteria. Moreover, our study raised new biotechnological possibilities for the use of water-soluble melanin-like pigment naturally produced by B. weihenstephanensis as an alternative to commercial non-soluble pigment.
机译:尽管已知黑色素可以保护生物免受有害的物理和化学因素影响,但在形成内生孢子的蜡状芽孢杆菌中很少观察到其合成。在这里,我们首次报道了来自波兰东北部的抗精神病威氏芽孢杆菌可产生黑色素样色素。我们评估了该色素的理化性质及其合成的机理,与魏氏史氏杆菌的基因型和表型特征有关。电子顺磁共振(EPR)光谱显示来自环境分离物的色素的稳定自由基信号,该信号与市售黑色素一致。傅立叶变换红外光谱(FT-IR)和理化测试表明该颜料具有酚性。几项生化试验表明,魏氏史氏杆菌中黑色素样色素的合成与漆酶活性有关。编码漆酶的基因的存在通过一株魏氏史氏杆菌的下一代全基因组测序来证实。分离物的生化(API 20E和50CHB测试)和遗传(多位点序列分型,16S rRNA测序和脉冲场凝胶电泳)表征表明,它们与精神营养型维氏芽孢杆菌DSMZ 11821参考菌株密切相关。土壤魏氏史氏杆菌分离物合成黑色素样色素的能力及其精神营养特性似乎是对特定生态位的局部适应。详细的遗传和生化分析黑色素阳性的环境魏氏杆菌的菌株为这些细菌的进化和生态适应提供了一些启示。此外,我们的研究提出了新的生物技术可能性,可用于使用魏汉斯巴德芽孢杆菌天然产生的水溶性黑色素样颜料作为商业非可溶性颜料的替代品。

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