Cheung Hon-Yeung, Cui Jianxun, Sun Su-Qin
Microbiology (Reading). 1999 May;145 ( Pt 5):1043-1048. doi: 10.1099/13500872-145-5-1043.
Chemical changes of particular Bacillus subtilis spore components were monitored by attenuated total reflection Fourier-transform infrared spectroscopy (ATR/FTIR) during spore germination on a ZnSe internal reflection element. Within minutes of the initiation of spore germination, significant changes in the amount of calcium dipicolinate (DPA-Ca) and proteins were noted in the wild-type strain. The changes in a germination mutant (strain 1G9, gerD) were similar to those in the wild-type strain, but the rates of change were slower. The changes in another germination mutant (strain 1G7, gerA) were very different from those in the first two strains: germination was slow and incomplete, and proteins and DPA-Ca remained unaltered throughout the course of the germination study. This technique thus offers a sensitive and non-destructive method for real-time monitoring of various cellular components during spore germination.
在ZnSe内反射元件上进行芽孢萌发过程中,通过衰减全反射傅里叶变换红外光谱(ATR/FTIR)监测了特定枯草芽孢杆菌芽孢成分的化学变化。在芽孢萌发开始后的几分钟内,野生型菌株中吡啶二羧酸钙(DPA-Ca)和蛋白质的含量出现了显著变化。萌发突变体(1G9菌株,gerD)中的变化与野生型菌株相似,但变化速率较慢。另一个萌发突变体(1G7菌株,gerA)中的变化与前两个菌株非常不同:萌发缓慢且不完全,在整个萌发研究过程中蛋白质和DPA-Ca保持不变。因此,该技术为芽孢萌发过程中各种细胞成分的实时监测提供了一种灵敏且无损的方法。