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A Portable Anaerobic Microbioreactor Reveals Optimum Growth Conditions for the Methanogen Methanosaeta concilii

机译:便携式厌氧微生物反应器揭示了产甲烷甲烷甲烷菌的最佳生长条件

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Conventional studies of the optimum growth conditions for methanogens (methane-producing, obligate anaerobic archaea) are typically conducted with serum bottles or bioreactors. The use of microfluidics to culture methanogens allows direct microscopic observations of the time-integrated response of growth. Here, we developed a microbioreactor (μBR) with ~1-μl microchannels to study some optimum growth conditions for the methanogen Methanosaeta concilii. The μBR is contained in an anaerobic chamber specifically designed to place it directly onto an inverted light microscope stage while maintaining a N2-CO2 environment. The methanogen was cultured for months inside microchannels of different widths. Channel width was manipulated to create various fluid velocities, allowing the direct study of the behavior and responses of M. concilii to various shear stresses and revealing an optimum shear level of ~20 to 35 μPa. Gradients in a single microchannel were then used to find an optimum pH level of 7.6 and an optimum total NH4-N concentration of less than 1,100 mg/liter (3-N) for M. concilii under conditions of the previously determined ideal shear stress and pH and at a temperature of 35°C.
机译:产甲烷菌(产甲烷,专性厌氧古细菌)最佳生长条件的常规研究通常使用血清瓶或生物反应器进行。使用微流体培养产甲烷菌可以对生长的时间积分响应进行直接的显微镜观察。在这里,我们开发了一种具有〜1-μl微通道的微生物反应器(μBR),以研究锥虫产甲烷菌Methanosaeta conilii的一些最佳生长条件。 μBR包含在专门设计为将其直接放置在倒置光学显微镜载物台上,同时保持N2-CO2环境的厌氧室中。产甲烷菌在不同宽度的微通道内培养了数月。操纵通道宽度以创建各种流体速度,从而可以直接研究conc果念珠菌对各种剪切应力的行为和响应,并揭示了约20至35μPa的最佳剪切水平。然后,在先前确定的理想剪切应力和条件下,使用单个微通道中的梯度来确定最佳的pH值为7.6,并且对于球果分枝杆菌而言,总的最佳NH4-N浓度低于1100 mg / L(3-N)。 pH值,温度为35°C。

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