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Discovery of a Significant Optical Chromatographic Difference between Spores of Bacillus anthracis and Its Close Relative, Bacillus thuringiensis

机译:发现炭疽芽孢杆菌及其近缘种苏云金芽孢杆菌的孢子之间存在显着的光学色谱差异

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A significant difference between two closely related Bacillus spores has been discovered using optical chromatography. This difference can be harnessed for the separation of microscopic particles using opposing laser and fluid flow forces. Particles of different size, composition, and shape experience different optical and fluid forces and come to rest at unique equilibrium positions where the two forces balance. Separations in excess of 600 (mu)m have been observed between Bacillus anthracis Sterne strain and its genetic relative, Bacillus thuringiensis. These findings open new possibilities for detection and characterization of the biological warfare agent, B. anthracis, the causative agent of anthrax, the deadly mammalian disease. The large optical separation between these species is surprising given their close genetic relationship but may be explained by differences in their shape and exosporium morphology, which may result in differences in fluid drag force. The observation of large differences due to less common variables indicates the complex nature of the force balance in optical chromatography, which may in the future be used to separate and characterize microbiological samples. In general, the discovery of such large differences between such closely related biological species suggests new possibilities for the separation and characterization of microorganisms using the full range of emerging techniques that employ radiation pressure (optical filtering, laser tweezers, optical chromatography, etc.).
机译:使用光学色谱法已经发现了两个紧密相关的芽孢杆菌孢子之间的显着差异。利用相反的激光和流体流动力,可以利用这种差异来分离微观颗粒。不同大小,组成和形状的粒子经受不同的光学和流体力,并停留在两个力平衡的唯一平衡位置。已经发现炭疽芽孢杆菌斯特恩菌株与其遗传亲代苏云金芽孢杆菌之间的分离超过600μm。这些发现为生物战剂炭疽芽孢杆菌(炭疽病的致病因子炭疽杆菌)的检测和鉴定开辟了新的可能性。考虑到它们的密切遗传关系,这些物种之间的巨大光学分离令人惊讶,但可以用它们的形状和外孢子形态的差异来解释,这可能导致流体阻力的差异。由于不太常见的变量而导致的较大差异的观察结果表明,光学色谱法中力平衡的复杂性质,将来可能会用于分离和表征微生物样品。通常,在这种密切相关的生物物种之间发现如此大的差异,这表明使用范围广泛的新兴技术利用辐射压力(光学过滤,激光镊子,光学色谱法等)对微生物进行分离和表征的新可能性。

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