Melly E, Genest P C, Gilmore M E, Little S, Popham D L, Driks A, Setlow P
Department of Biochemistry, University of Connecticut Health Center, Farmington, CT 06032, USA.
J Appl Microbiol. 2002;92(6):1105-15. doi: 10.1046/j.1365-2672.2002.01644.x.
To determine the effect of sporulation temperature on Bacillus subtilis spore resistance and spore composition.
Bacillus subtilis spores prepared at temperatures from 22 to 48 degrees C had identical amounts of dipicolinic acid and small, acid-soluble proteins but the core water content was lower in spores prepared at higher temperatures. As expected from this latter finding, spores prepared at higher temperatures were more resistant to wet heat than were spores prepared at lower temperatures. Spores prepared at higher temperatures were also more resistant to hydrogen peroxide, Betadine, formaldehyde, glutaraldehyde and a superoxidized water, Sterilox. However, spores prepared at high and low temperatures exhibited nearly identical resistance to u.v. radiation and dry heat. The cortex peptidoglycan in spores prepared at different temperatures showed very little difference in structure with only a small, albeit significant, increase in the percentage of muramic acid with a crosslink in spores prepared at higher temperatures. In contrast, there were readily detectable differences in the levels of coat proteins in spores prepared at different temperatures and the levels of at least one coat protein, CotA, fell significantly as the sporulation temperature increased. However, this latter change was not due to a reduction in cotA gene expression at higher temperatures.
The temperature of sporulation affects a number of spore properties, including resistance to many different stress factors, and also results in significant alterations in the spore coat and cortex composition.
The precise conditions for the formation of B. subtilis spores have a large effect on many spore properties.
确定芽孢形成温度对枯草芽孢杆菌芽孢抗性和芽孢组成的影响。
在22至48摄氏度温度下制备的枯草芽孢杆菌芽孢,其二吡啶甲酸和小的酸溶性蛋白质含量相同,但较高温度下制备的芽孢核心含水量较低。从后一发现可以预期,较高温度下制备的芽孢比低温下制备的芽孢对湿热更具抗性。较高温度下制备的芽孢对过氧化氢、聚维酮碘、甲醛、戊二醛和超氧化水Sterilox也更具抗性。然而,高低温下制备的芽孢对紫外线辐射和干热的抗性几乎相同。不同温度下制备的芽孢中的皮层肽聚糖在结构上差异很小,只是较高温度下制备的芽孢中带有交联的胞壁酸百分比略有增加,尽管增幅显著。相比之下,不同温度下制备的芽孢中外壳蛋白水平存在易于检测到的差异,并且随着芽孢形成温度的升高,至少一种外壳蛋白CotA的水平显著下降。然而,后一种变化并非由于较高温度下cotA基因表达的降低。
芽孢形成温度影响许多芽孢特性,包括对许多不同应激因素的抗性,还会导致芽孢外壳和皮层组成发生显著改变。
枯草芽孢杆菌芽孢形成的精确条件对许多芽孢特性有很大影响。