Guillou C, Guespin-Michel J F
Laboratoire de Microbiologie du Froid, Evreux, France.
Appl Environ Microbiol. 1996 Sep;62(9):3319-24. doi: 10.1128/aem.62.9.3319-3324.1996.
The variations in the maximal specific growth rate of the psychrotrophic bacterium Pseudomonas fluorescens MF0 with respect to temperature were studied between 0 and 30 degrees C (optimal for growth). The Arrhenius plot showed a drastic change in slope at the intermediate temperature of 17 degrees C. Over the cold domain from 0 to 17 degrees C, the temperature characteristic was twofold higher than over the suboptimal domain from 17 to 30 degrees C. The macromolecular composition of exponentially growing cells was invariant over the entire range from 0 to 30 degrees C. Variations of temperature and growth rate were independently investigated through chemostat experiments in order to characterize their respective effects on cell macromolecular composition and size. The effect of growth rate in this psychrotrophic strain is identical to that of all other bacteria assayed so far. In contrast, an original biphasic variation of total protein concentration was demonstrated in strain MF0 with respect to temperature, with a maximum at 17 to 20 degrees C. Indeed, increasing the temperature in the chemostat resulted in a biphasic decrease in the net protein production rate: a very slight decrease below 17 degrees C and a much larger decrease from 17 to 28 degrees C. These results could signify an increase in the cellular protein degradation rate with increasing temperature, especially above 17 degrees C.
研究了嗜冷细菌荧光假单胞菌MF0在0至30摄氏度(生长最适宜温度范围)内最大比生长速率随温度的变化情况。阿累尼乌斯图显示,在17摄氏度这一中间温度下斜率发生了急剧变化。在0至17摄氏度的低温范围内,温度特征比17至30摄氏度的次适宜温度范围内高两倍。在0至30摄氏度的整个范围内,指数生长细胞的大分子组成保持不变。通过恒化器实验独立研究了温度和生长速率的变化,以表征它们对细胞大分子组成和大小的各自影响。该嗜冷菌株中生长速率的影响与迄今为止检测的所有其他细菌相同。相比之下,菌株MF0中总蛋白浓度相对于温度呈现出一种原始的双相变化,在17至20摄氏度时达到最大值。实际上,在恒化器中升高温度会导致净蛋白产生速率出现双相下降:在17摄氏度以下下降非常轻微,而从17至28摄氏度下降幅度更大。这些结果可能表明,随着温度升高,细胞蛋白降解速率增加,尤其是在17摄氏度以上。