Effect of metal ions on growth and sporulation of Clostridium perfringens in a synthetic medium.

K Y Lee, T C Juang, K C Lee
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Abstract

All cells, whatever their origin, function in an essentially inorganic environment. In this environment, metal cations play an important role. Attempts were made in the present study to determine if different amounts of five metal ions (MG++, Fe++, Mn++, Zn++, Ca++) are needed for secondary metabolism of Clostridium perfringens than are needed for primary metabolism. Both the vegetative growth stage (primary metabolic stage) and spore stage (secondary metabolic stage) of Clostridium perfringens were studied. Endeavors were made to detect the effects of metal ions, if any, on growth and sporulation of the organisms. Mg++ was required for growth of vegetative cells and maintenance of normal cellular morphology, Fe++ was needed for sporulation as well as for vegetative growth, but the amount needed for spore formation was higher than that needed for growth. Ca++ was essential to refractility and heat-resistance of spores. Zn++ inhibited both growth and sporulation, if the Mg++ concentration was low. Mn++ was required for neither growth nor sporulation. For maximum heat-resistance of the spores, Ca++ plus unidentified organic substances were required.

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金属离子对合成培养基中产气荚膜梭菌生长和产孢的影响。
所有细胞,无论其来源如何,本质上都是在无机环境中起作用的。在这种环境下,金属阳离子起着重要的作用。本研究试图确定产气荚膜梭菌次级代谢所需的五种金属离子(MG++、Fe++、Mn++、Zn++、Ca++)是否与初级代谢所需的金属离子不同。研究了产气荚膜梭菌的营养生长期(初级代谢期)和孢子期(次级代谢期)。人们努力检测金属离子(如果有的话)对生物体生长和产孢的影响。营养细胞的生长和正常细胞形态的维持需要Mg++,孢子形成和营养生长都需要Fe++,但孢子形成所需的量要高于生长所需的量。Ca++对孢子的折射率和耐热性至关重要。当Mg++浓度较低时,Zn++抑制植株生长和产孢。生长和产孢都不需要Mn++。为了使孢子具有最大的耐热性,需要钙++不明有机物质。
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