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通过独特的芽孢衣表面形态对芽孢杆菌的物种和菌株进行指纹识别。

Fingerprinting species and strains of Bacilli spores by distinctive coat surface morphology.

作者信息

Wang Rong, Krishnamurthy Soumya N, Jeong Jae-Sun, Driks Adam, Mehta Manav, Gingras Bruce A

机构信息

Department of Biological, Chemical and Physical Sciences, Illinois Institute of Technology, Chicago, Illinois 60616, USA.

出版信息

Langmuir. 2007 Sep 25;23(20):10230-4. doi: 10.1021/la701788d. Epub 2007 Aug 28.

Abstract

In this work, we applied high-resolution atomic force microscopy (AFM) to identify and characterize similarities and differences in the spore surface morphology of strains from four species of Bacilli: B. anthracis, B. cereus, B. pumilis, and B. subtilis. Common features of the examined spores in the dry state included ridges that spanned the long axis of each spore, and nanometer-scale fine rodlets that covered the entire spore surface. However, important differences in these features between species permitted them to be distinguished by AFM. Specifically, each species possessed significant variation in ridge architecture, and the rodlet width in B. anthracis was significantly less than that of the other species. To characterize similarities and differences within a species, we examined three B. subtilis strains. The ridge patterns among the three strains were largely the same; however, we detected significant differences in the ridge dimensions. Taken together, these experiments provide important information about natural variation in spore surface morphology, define structural features that can serve as species- and strain-specific signatures, and give insight into the dynamics of spore coat flexibility and its role during spore dormancy and germination.

摘要

在这项工作中,我们应用高分辨率原子力显微镜(AFM)来识别和表征炭疽芽孢杆菌、蜡样芽孢杆菌、短小芽孢杆菌和枯草芽孢杆菌这四种芽孢杆菌属菌株孢子表面形态的异同。在干燥状态下,所检测孢子的共同特征包括横跨每个孢子长轴的脊以及覆盖整个孢子表面的纳米级细杆状结构。然而,这些特征在不同物种之间存在重要差异,使得它们能够通过AFM进行区分。具体而言,每个物种的脊结构存在显著差异,并且炭疽芽孢杆菌中的杆状结构宽度明显小于其他物种。为了表征同一物种内的异同,我们检测了三株枯草芽孢杆菌。这三株菌株的脊模式基本相同;然而,我们检测到脊尺寸存在显著差异。综上所述,这些实验提供了有关孢子表面形态自然变异的重要信息,定义了可作为物种和菌株特异性特征的结构特征,并深入了解了孢子外壁柔韧性的动态变化及其在孢子休眠和萌发过程中的作用。

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