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Product Inhibition of Butyrate Metabolism by Acetate and Hydrogen in a Thermophilic Coculture

机译:乙酸盐和氢气中乙酸丁酯在嗜热共培养中的产物抑制

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摘要

Studies on product inhibition of a thermophilic butyrate-degrading bacterium in syntrophic association with Methanobacterium thermoautotrophicum showed that a gas phase containing more than 2 × 10?2 atm (2.03 kPa) of hydrogen prevented growth and butyrate consumption, while a lower hydrogen partial pressure of 1 × 10?3 to 2 × 10?2 atm (0.1 to 2.03 kPa) gradually inhibited the butyrate consumption of the coculture. No inhibition of butyrate consumption was found on the addition of 0.75 × 10?3 atm (76 Pa) of hydrogen to the gas phase. A slight inhibition of butyrate consumption by the coculture occurred at an acetate concentration of 16.4 mM. Inhibition gradually increased with increasing acetate concentration up to 81.4 mM, when complete inhibition of butyrate consumption occurred. When the culture contained an acetate-utilizing methanogen in addition to M. thermoautotrophicum, the inhibition of the triculture by acetate was gradually reversed as the acetate concentration was lowered by the aceticlastic methanogen. The results show that optimal growth conditions for the thermophilic butyrate-degrading bacterium depend on both hydrogen and acetate removal.
机译:与甲基杆菌的嗜热丁酸酯降解细菌的产物抑制的研究表明,含有超过2×10〜2atm(2.03kPa)的气相防止生长和丁酸酯消耗,而较低的氢气压力1×10?3至2×10?2 atm(0.1至2.03kPa)逐渐抑制丁酸盐的含量消耗。在加入0.75×10·10·3atm(76Pa)的气相中,未发现对丁酸酯消耗的抑制。通过乙酸盐浓度为16.4mm的乙酸浓度,对丁酸盐消耗的轻微抑制。当发生完全抑制丁酸盐消耗时,抑制逐渐增加,醋酸盐浓度增加高达81.4mm。除了M. ThermoOtotrophicum之外,培养物含有乙酸盐的甲菊酯,醋酸酯的抑制作用逐渐逆转,因为醋酸纤维素由醋酸纤维素降低。结果表明,嗜热丁酸丁酸酯降解细菌的最佳生长条件取决于氢气和乙酸盐去除。

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