Liang Jintao, Zhang Pengfei, Setlow Peter, Li Yong-Qing
Appl Environ Microbiol. 2014 Aug;80(15):4606-15. doi: 10.1128/AEM.01204-14.
High-precision measurements of size changes of individual bacterial spores based on ellipse fitting to bright-field images recorded with a digital camera were employed to monitor the germination of Bacillus spores with a precision of ~5 nm. To characterize the germination of individual spores, we recorded bright-field and phase-contrast images and found that the timing of changes in their normalized intensities coincided, so the bright-field images can be used to characterize spore size and refractility changes during germination. The major conclusions from this work were as follows. (i) The sizes of germinating B. cereus spores were nearly unchanged until Trelease, the time of the completion of CaDPA (a 1:1 chelate of Ca(2+) and dipicolinic acid [DPA]) release after addition of nutrient germinants. (ii) The minor axis of germinating B. cereus spores rapidly increased by ~50 nm in a few seconds right after Trelease, while the major axis was slightly decreased or unchanged. Both the minor and major axes remained unchanged for a further 30 to 45 s and then increased by 100 to 200 nm by Tlys, the time of completion of cortex lysis. (iii) Individual spores in a population showed significant heterogeneity in the timing of germination events, such as Trelease and Tlys, but also variation in size changes during germination. (iv) Bacillus subtilis wild-type spores, B. subtilis spores lacking the cortex-lytic enzyme CwlJ, and wild-type Bacillus megaterium spores showed similar kinetics of size changes during nutrient germination. The size increases in germinating spores probably result from uptake of water and cortex lysis after completion of CaDPA release.
基于对数码相机记录的明场图像进行椭圆拟合,对单个细菌芽孢的大小变化进行高精度测量,以此来监测芽孢杆菌芽孢的萌发,精度约为5纳米。为了表征单个芽孢的萌发过程,我们记录了明场和相差图像,发现它们归一化强度变化的时间是一致的,因此明场图像可用于表征芽孢在萌发过程中的大小和折射性变化。这项工作的主要结论如下。(i)在添加营养萌发剂后,蜡样芽孢杆菌萌发芽孢的大小在CaDPA(Ca²⁺与吡啶二羧酸[DPA]的1:1螯合物)释放完成时间Trelease之前几乎没有变化。(ii)蜡样芽孢杆菌萌发芽孢的短轴在Trelease后几秒钟内迅速增加约50纳米,而长轴略有下降或保持不变。短轴和长轴在接下来的30至45秒内保持不变,然后在皮层溶解完成时间Tlys时增加100至200纳米。(iii)群体中的单个芽孢在萌发事件的时间上,如Trelease和Tlys,表现出显著的异质性,但在萌发过程中的大小变化也存在差异。(iv)枯草芽孢杆菌野生型芽孢、缺乏皮层溶解酶CwlJ的枯草芽孢杆菌芽孢以及巨大芽孢杆菌野生型芽孢在营养萌发过程中显示出相似的大小变化动力学。萌发芽孢的大小增加可能是由于CaDPA释放完成后水的吸收和皮层溶解所致。