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Mechanisms of killing spores of Bacillus subtilis by acid, alkali and ethanol

机译:酸,碱和乙醇杀死枯草芽孢杆菌孢子的机理

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摘要

To determine the mechanisms of killing of Bacillus subtilis spores by ethanol or strong acid or alkali. Methods and Results: Killing of B. subtilis spores by ethanol or strong acid or alkali was not through DNA damage and the spore coats did not protect spores against these agents. Spores treated with ethanol or acid released their dipicolinic acid (DPA) in parallel with spore killing and the core wet density of ethanol- or acid-killed spores fell to a value close to that for untreated spores lacking DPA. The core regions of spores killed by these two agents were stained by nucleic acid stains that do not penetrate into the core of untreated spores and acid-killed spores appeared to have ruptured. Spores killed by these two agents also did not germinate in nutrient and nonnutrient germinants and were not recovered by lysozyme treatment. Spores killed by alkali did not lose their DPA, did not exhibit a decrease in their core wet density and their cores were not stained by nucleic acid stains. Alkali-killed spores released their DPA upon initiation of spore germination, but did not initiate metabolism and degraded their cortex very poorly. However, spores apparently killed by alkali were recovered by lysozyme treatment. Conclusions: The data suggest that spore killing by ethanol and strong acid involves the disruption of a spore permeability barrier, while spore killing by strong alkali is due to the inactivation of spore cortex lytic enzymes. Significance and Impact of the Study: The results provide further information on the mechanisms of spore killing by various chemicals.
机译:确定乙醇或强酸或强碱杀死枯草芽孢杆菌孢子的机制。方法和结果:乙醇,强酸或强碱杀死枯草芽孢杆菌的孢子不是通过DNA损伤,并且孢子皮不能保护孢子不受这些试剂的侵害。用乙醇或酸处理过的孢子在杀死孢子的同时释放了二吡啶甲酸(DPA),乙醇或酸杀死的孢子的核心湿密度下降到接近未经处理的缺乏DPA的孢子的值。被这两种试剂杀死的孢子的核心区域被未渗透未处理孢子核心的核酸染色剂染色,酸杀死的孢子似乎已经破裂。被这两种药剂杀死的孢子在营养和非营养发芽剂中也不会发芽,并且不能通过溶菌酶处理而回收。被碱杀死的孢子没有失去DPA,核心湿密度没有降低,核心也没有被核酸染色。碱杀死的孢子在孢子萌发开始时释放其DPA,但没有引发新陈代谢,并且其皮质的降解非常差。然而,显然被碱杀死的孢子通过溶菌酶处理被回收。结论:数据表明,乙醇和强酸杀死孢子涉及破​​坏孢子的渗透性屏障,而强碱杀死孢子是由于孢子皮层分解酶的失活。研究的意义和影响:结果提供了有关各种化学物质杀死孢子的机制的进一步信息。

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