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[在溶解氧受限条件下短杆菌肽 S 产生菌的生长与发育]

[Growth and development of a gramicidin S producer under limiting conditions with dissolved oxygen].

作者信息

Egorov N S, Udalova T P

出版信息

Antibiotiki. 1981 Sep;26(9):664-7.

PMID:6170251
Abstract

When the gramicidin S-producing organism is cultivated under submerged conditions its growth is limited by dissolved oxygen in the medium. The beginning of the decrease in the growth rate and respiration of the bacterial cells is observed at the dissolved oxygen concentration equal to approximately 20--40 per cent of the saturation level. The following decrease in the oxygen concentration up to the critical values results in termination of the culture growth. As a result a part of the cells die and the survivors begin intensively multiply. With decreasing of the aeration and agitation rates the step-wise character of the culture growth appears to be more pronounced. With an increase in the aeration and agitation rates the time of the culture growth under conditions of limited aeration decreases, while the synthesis of gramicidin S in this case often decreases. Limitation of the culture growth with dissolved oxygen is accompanied by a decrease in the value of the economic coefficient which is evident of a significant dissociation between the energy and constructive metabolism of the organism under such conditions.

摘要

当在深层培养条件下培养产生短杆菌肽S的微生物时,其生长受到培养基中溶解氧的限制。在溶解氧浓度约为饱和水平的20%-40%时,可观察到细菌细胞生长速率和呼吸作用开始下降。随后氧浓度降至临界值会导致培养物生长终止。结果,一部分细胞死亡,存活的细胞开始大量繁殖。随着通气和搅拌速率的降低,培养物生长的阶段性特征似乎更加明显。随着通气和搅拌速率的增加,在通气受限条件下培养物生长的时间减少,而此时短杆菌肽S的合成通常会减少。溶解氧对培养物生长的限制伴随着经济系数值的降低,这表明在这种条件下生物体的能量代谢和合成代谢之间存在明显的脱节。

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