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首页> 外文期刊>Journal of applied microbiology >Germination of spores of Bacillus subtilis with dodecylamine
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Germination of spores of Bacillus subtilis with dodecylamine

机译:枯草芽孢杆菌的芽孢与十二烷基胺的萌发

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Aims: To determine the properties of Bacillus subtilis spores germinated with the alkylamine dodecylamine, and the mechanism of dodecylamine-induced spore germination. Methods and Results: Spores of B. subtilis prepared in liquid medium were germinated efficiently by dodecylamine, while spores prepared on solid medium germinated more poorly with this agent. Dodecylamine germination of spores was accompanied by release of almost all spore dipicolinic acid (DPA), degradation of the spore's peptidoglycan cortex, release of the spore's pool of free adenine nucleotides and the killing of the spores. The dodecylamine-germinated spores did not initiate metabolism, did not degrade their pool of small, acid-soluble spore proteins efficiently and had a significantly lower level of core water than did spores germinated by nutrients. As measured by DPA release, dodecylamine readily induced germination of B. subtilis spores that: (a) were decoated, (b) lacked all the receptors for nutrient germinants, (c) lacked both the lytic enzymes either of which is essential for cortex degradation, or (d) had a cortex that could not be attacked by the spore's cortex-lytic enzymes. The DNA in dodecylamine-germinated wild-type spores was readily stained, while the DNA in dodecylamine-germinated spores of strains that were incapable of spore cortex degradation was not. These latter germinated spores also did not release their pool of free adenine nucleotides. Conclusions: These results indicate that: (a) the spore preparation methods is very important in determining the rate of spore germination with dodecylamine, (b) wild-type spores germinated by dodecylamine progress only part way through the germination process, (c) dodecylamine may trigger spore germination by a novel mechanism involving the activation of neither the spore's nutrient germinant receptors nor the cortex-lytic enzymes, and (d) dodecylamine may trigger spore germination by directly or indirectly activating release of DPA from the spore core, through the opening of channels for DPA in the spore's inner membrane. Significance and Impact of the Study: These results provide new insight into the mechanism of spore germination with the cationic surfactant dodecylamine, and also into the mechanism of spore germination in general. New knowledge of mechanism to stimulate spore germination may have applied utility, as germinated spores are much more sensitive to processing treatments than are dormant spores.
机译:目的:确定枯草芽孢杆菌芽孢经烷基胺十二胺萌发的特性,以及十二胺诱导孢子萌发的机理。方法和结果:十二烷基胺能有效地使液体培养基中制备的枯草芽孢杆菌的孢子萌发,而固体培养基上的枯草芽孢则难于发芽。孢子的十二烷基胺萌发伴随着几乎所有孢子二吡啶甲酸(DPA)的释放,孢子肽聚糖皮层的降解,孢子的游离腺嘌呤核苷酸库的释放以及孢子的杀死。十二烷基胺萌发的孢子不会启动代谢,不会有效降解其小的酸溶性孢子蛋白库,并且核心水的含量比养分萌发的孢子要低得多。如通过DPA释放测量的那样,十二烷基胺很容易诱导枯草芽孢杆菌孢子萌发,其中:(a)被去壳,(b)缺乏营养萌发剂的所有受体,(c)缺乏两种溶解酶,这两种酶都是皮层降解所必需的或(d)的皮层不能被孢子的皮层分解酶攻击。十二烷基胺发芽的野生型孢子中的DNA容易染色,而不能进行孢子皮层降解的菌株的十二烷基胺发芽的孢子中的DNA不易染色。这些后来发芽的孢子也没有释放其游离腺嘌呤核苷酸库。结论:这些结果表明:(a)孢子制备方法对于确定十二烷基胺的孢子发芽率非常重要;(b)十二烷基胺发芽的野生型孢子仅在发芽过程中部分进展;(c)十二烷基胺可能会通过一种新颖的机制触发孢子萌发,该机制既不激活孢子的营养发芽受体,也不激活皮层分解酶,并且(d)十二烷基胺可以通过直接或间接激活DPA从孢子核心的释放来触发孢子萌发。孢子内膜中DPA的通道研究的意义和影响:这些结果为阳离子表面活性剂十二烷基胺对孢子萌发的机理以及一般情况下的孢子萌发的机理提供了新的认识。刺激孢子萌发的机制的新知识可能已经应用,因为发芽的孢子比休眠孢子对加工处理更为敏感。

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