首页> 美国卫生研究院文献>Journal of Bacteriology >Variations in the Adenylate Energy Charge During Phased Growth (Cell Cycle) of Candida utilis Under Energy Excess and Energy-Limiting Growth Conditions
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Variations in the Adenylate Energy Charge During Phased Growth (Cell Cycle) of Candida utilis Under Energy Excess and Energy-Limiting Growth Conditions

机译:能量过剩和能量限制生长条件下of鱼假丝酵母分阶段生长(细胞周期)过程中腺苷酸能电荷的变化

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摘要

The variations in the levels of adenine nucleotides during the phased growth (cell cycle) of the yeast Candida utilis growing under nitrogen, sulfate, or iron limitation with glycerol as carbon source have been determined. Synchronous cultures were obtained by the continuous phasing technique, and the results were compared with those of chemostat cultures growing at similar growth rates and under the same types of nutrient limitation. Whereas the chemostat experiments indicated only the average energy status of cultures growing at random, results from phased cultures showed that the adenylate energy charge, defined as (ATP + ½ADP)/(ATP + ADP + AMP) (where ATP, ADP, and AMP signify adenosine 5′-triphosphate, -diphosphate, and -monophosphate, respectively), varied during the phased growth of the yeast. These variations were related to the stage of development of the cells and to the type of nutrient limitation. In every case the energy charge dropped to a low value during the first half of the phasing cycle (cell cycle). Whereas the energy charge was maintained at relatively high levels (ranging from 0.78 to 0.94), for sulfate- or nitrogen-limited cultures, it was very low when iron was the growth-limiting nutrient (0.44 to 0.78). In spite of the low energy charge, the yeast continued to grow under iron limitation. The main component of the adenylate pool of the iron-limited culture was ADP and not ATP as observed with other types of nutrient limitation. It is concluded that under iron limitation the growth of the organism is limited by energy and that under energy-limited growth the energy charge of a growing organism is maintained at low levels. The reason for maintaining a low energy charge in an energy-limited culture is discussed.
机译:已经确定了在以甘油为碳源的氮,硫酸盐或铁限制条件下生长的酵母假丝酵母的分阶段生长(细胞周期)过程中腺嘌呤核苷酸水平的变化。通过连续定相技术获得了同步培养物,并将其结果与以相似的生长速率和相同的养分限制类型生长的化学恒温器培养物进行了比较。恒化器实验仅显示了随机培养的平均能量状态,而分阶段培养的结果表明,腺苷酸能电荷定义为(ATP +½ADP)/(ATP + ADP + AMP)(其中ATP,ADP和AMP分别表示在酵母的分阶段生长期间变化的腺苷5'-三磷酸,-二磷酸和-一磷酸腺苷。这些变化与细胞发育阶段和营养限制类型有关。在每种情况下,在定相周期(单元周期)的前半段,能量电荷都降低到较低的值。尽管对于硫酸盐或氮有限的培养物,能量电荷保持在相对较高的水平(从0.78至0.94),但当铁为生长受限的营养物(0.44至0.78)时,能量电荷非常低。尽管能量消耗低,但酵母在铁限制下继续生长。限铁培养物中腺苷酸池的主要成分是ADP,而不是其他类型的养分限制所观察到的ATP。结论是,在铁限制下,生物的生长受到能量的限制,在能量限制的生长下,正在生长的生物的能量电荷保持在较低水平。讨论了在能量受限的文化中保持低能量电荷的原因。

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