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Use of Iron Powder to Obtain High Yields of Leptothrix Sheaths in Culture

机译:使用铁粉获得高产量的Leptothrix鞘

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The Leptothrix species, Fe-oxidizing bacteria, produce an extracellular, microtubular sheath with a complicated organic–inorganic hybrid nature. We have discovered diverse industrial functions for this material, e.g., electrode material for Li-ion batteries, catalyst enhancers, pigments, plant growth promoters, and plant protectants. To consistently obtain material with the qualitative and quantitative stability needed for industrial applications, we focused on developing an optimum culture system for sheath synthesis by the Leptothrix sp. strain OUMS1. Although we have used Fe plates as an Fe source in the liquid silicon-glucose-peptone medium (SGP), the plates do not yield a consistent quality or precise mass, and formation of Fe-encrusted sheath is restricted to a surface of the plates, which limits harvest yield. In this study, to obtain a high yield of sheaths, we cultured OUMS1 in SGP supplemented with Fe powders. The addition of Fe powders to the medium (up to 14.0 g/L) did not adversely influence growth of OUMS1. The final yield of sheaths was about 10-fold greater than in the Fe plate culture. The sheaths also maintained a microtubular form and crystalline texture similar to those produced on Fe plates in SGP. The results proved the usefulness of Fe powder for consistently high yields of Fe-encrusted sheaths of stable quality.
机译:Leptothrix物种,Fe氧化细菌,产生具有复杂的有机-无机杂化特性的细胞外微管鞘。我们已经发现这种材料具有多种工业功能,例如,用于锂离子电池的电极材料,催化剂增强剂,颜料,植物生长促进剂和植物保护剂。为了始终如一地获得具有工业应用所需的定性和定量稳定性的材料,我们专注于为Leptothrix sp。开发用于鞘合成的最佳培养系统。菌株OUMS1。尽管我们已使用Fe板作为液态硅-葡萄糖-p介质(SGP)中的Fe来源,但这些板的质量或质量均不一致,并且形成Fe的皮层仅限于板的表面,这限制了收成。在这项研究中,为了获得高产量的鞘,我们在补充铁粉的SGP中培养了OUMS1。向介质中添加铁粉(最高14.0 g / L)不会对OUMS1的生长产生不利影响。鞘的最终产量比铁平板培养物高约10倍。鞘还保持了微管形式和晶体质地,类似于在SGP中的Fe板上产生的形式。结果证明了铁粉对于稳定地生产高品质的铁包皮护套的有效性。

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