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A Novel Highly Efficient Device for Growing Micro-Aerophilic Microorganisms

机译:一种新型的高效生长微需氧微生物的装置

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This work describes a novel, simple and cost-effective culture system, named the Micro-Oxygenated Culture Device (MOCD), designed to grow microorganisms under particularly challenging oxygenation conditions. Two microaerophilic magnetotactic bacteria, a freshwater Magnetospirillum gryphiswaldense strain MSR-1 and a marine Magnetospira sp. strain QH-2, were used as biological models to prove the efficiency of the MOCD and to evaluate its specifications. Using the MOCD, growth rates of MSR-1 and QH-2 increased by four and twofold, respectively, when compared to traditional growing techniques using simple bottles. Oxystat-bioreactors have been typically used and specifically designed to control low dissolved oxygen concentrations, however, the MOCD, which is far less sophisticated was proven to be as efficient for both MSR-1 and QH-2 cultures with regard to growth rate, and even better for MSR-1 when looking at cell yield (70% increase). The MOCD enables a wide range of oxygenation conditions to be studied, including different O _(2)-gradients. This makes it an innovative and ingenious culture device that opens up new parameters for growing microaerobic microorganisms.
机译:这项工作描述了一种新颖,简单且具有成本效益的培养系统,称为微氧培养装置(MOCD),旨在在极富挑战性的氧化条件下培养微生物。两个微需氧趋磁细菌,一个淡水格氏螺旋藻MSR-1和一个海洋磁螺菌。菌株QH-2被用作生物学模型以证明MOCD的效率并评估其规格。与使用简单瓶装的传统种植技术相比,使用MOCD可使MSR-1和QH-2的生长速度分别增加四倍和两倍。通常使用Oxystat生物反应器并将其设计为控制低溶解氧浓度的方法,然而,事实证明,MOCD的复杂性要低得多,它在生长速率方面对MSR-1和QH-2培养均有效。从细胞产量来看,MSR-1甚至更好(增加70%)。 MOCD可以研究广泛的氧合条件,包括不同的O _(2)梯度。这使其成为一种创新且独具匠心的培养设备,为生长需氧微生物打开了新的参数。

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