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首页> 外文期刊>Journal of bacteriology >Clock Control of Ultradian Respiratory Oscillation Found during Yeast Continuous Culture
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Clock Control of Ultradian Respiratory Oscillation Found during Yeast Continuous Culture

机译:酵母连续培养过程中发现的超人呼吸振荡的时钟控制

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摘要

A short-period autonomous respiratory ultradian oscillation (period ≈ 40 min) occurs during aerobic Saccharomyces cerevisiae continuous culture and is most conveniently studied by monitoring dissolved O2 concentrations. The resulting data are high quality and reveal fundamental information regarding cellular dynamics. The phase diagram and discrete fast Fourier transformation of the dissolved O2 values revealed a square waveform with at least eight harmonic peaks. Stepwise changes in temperature revealed that the oscillation was temperature compensated at temperatures ranging from 27 to 34°C when either glucose (temperature quotient [Q10] = 1.02) or ethanol (Q10 = 0.82) was used as a carbon source. After alteration of the temperature beyond the temperature compensation region, phase coherence events for individual cells were quickly lost. As the cell doubling rate decreased from 15.5 to 9.2 h (a factor of 1.68), the periodicity decreased by a factor of 1.26. This indicated that there was a degree of nutrient compensation. Outside the range of dilution rates at which stable oscillation occurred, the mode of oscillation changed. The oscillation in respiratory output is therefore under clock control.
机译:有氧酿酒酵母连续培养过程中发生短时自主呼吸性超音速振荡(周期约40分钟),通过监测溶解的O 2 浓度可以很方便地进行研究。结果数据是高质量的,并揭示了有关细胞动力学的基本信息。溶解的O 2 值的相图和离散快速傅立叶变换显示出至少具有八个谐波峰值的方波。温度的逐步变化表明,当葡萄糖(温度商[Q 10 ] = 1.02)或乙醇(Q 10 = 0.82)被用作碳源。在超出温度补偿区域的温度改变后,单个电池的相干事件迅速消失。随着细胞倍增速率从15.5降至9.2 h(1.68倍),周期性降低了1.26倍。这表明存在一定程度的营养补偿。在发生稳定振荡的稀释率范围之外,振荡模式发生了变化。因此,呼吸输出的振荡受时钟控制。

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