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Influence of Anaerobiosis and Low Temperature on Bacillus cereus Growth Metabolism and Membrane Properties

机译:厌氧菌和低温对蜡状芽孢杆菌生长代谢和膜特性的影响

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摘要

The impact of simultaneous anaerobiosis and low temperature on growth parameters, metabolism, and membrane properties of Bacillus cereus ATCC 14579 was studied. No growth was observed under anaerobiosis at 12°C. In bioreactors, growth rates and biomass production were drastically reduced by simultaneous anaerobiosis and low temperature (15°C). The two conditions had a synergistic effect on biomass reduction. In anaerobic cultures, fermentative metabolism was modified by low temperature, with a marked reduction in ethanol production leading to a lower ability to produce NAD+. Anaerobiosis reduced unsaturated fatty acids at both low optimal temperatures. In addition, simultaneous anaerobiosis and low temperatures markedly reduced levels of branched-chain fatty acids compared to all other conditions (accounting for 33% of total fatty acids against more 71% for low-temperature aerobiosis, optimal-temperature aerobiosis, and optimal-temperature anaerobiosis). This corresponded to high-melting-temperature lipids and to low-fluidity membranes, as indicated by differential scanning calorimetry, 1,6-diphenyl-1,3,5-hexatriene (DPH) fluorescence anisotropy, and infrared spectroscopy. This is in contrast to requirements for cold adaptation. A link between modification in the synthesis of metabolites of fermentative metabolism and the reduction of branched-chain fatty acids at low temperature under anaerobiosis, through a modification of the oxidizing capacity, is assumed. This link may partly explain the impact of low temperature and anaerobiosis on membrane properties and growth performance.
机译:研究了同时厌氧和低温对蜡状芽孢杆菌ATCC 14579的生长参数,代谢和膜特性的影响。在12°C的厌氧菌培养下未观察到生长。在生物反应器中,同时厌氧和低温(15°C)大大降低了生长速率和生物量生产。这两个条件对生物量减少具有协同作用。在厌氧培养中,低温会改变发酵代谢,乙醇产量显着下降,导致产生NAD + 的能力降低。在两个较低的最佳温度下,厌氧菌都能还原不饱和脂肪酸。此外,与所有其他条件相比,同时厌氧和低温显着降低了支链脂肪酸的含量(占总脂肪酸的33%,而低温需氧,最佳温度需氧和最佳温度则占71%以上)厌氧菌)。如差示扫描量热法,1,6-二苯基-1,3,5-己三烯(DPH)荧光各向异性和红外光谱所表明的,这对应于高熔点脂质和低流动性膜。这与冷适应的要求相反。假设通过氧化能力的改变,在发酵代谢的代谢物的合成中的修饰与在厌氧条件下在低温下厌氧下的支链脂肪酸的还原之间存在联系。该链接可能部分解释了低温和厌氧菌对膜特性和生长性能的影响。

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