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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Analysis of the Raman spectra of Ca ~(2+)-dipicolinic acid alone and in the bacterial spore core in both aqueous and dehydrated environments
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Analysis of the Raman spectra of Ca ~(2+)-dipicolinic acid alone and in the bacterial spore core in both aqueous and dehydrated environments

机译:含水和脱水环境中单独的Ca〜(2 +)-二吡啶甲酸和细菌孢子核心中的拉曼光谱分析

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The core of dormant bacterial spores suspended in water contains a large depot of dipicolinic acid (DPA) chelated with divalent cations, predominantly Ca ~(2+) (CaDPA), and surrounded by water molecules. Since the intensities of the vibration bands of CaDPA molecules depend significantly on the water content in the CaDPA's environment, the Raman spectra of CaDPA in spores may allow the determination of the spore core's hydration state. We have measured Raman spectra of single spores of three Bacillus species in different hydration states including the spores suspended in water, air-dried and vacuum-dried. As a comparison, we also measured the Raman spectra of CaDPA and DPA in different forms including in aqueous solution, and as amorphous powder and crystalline form. We also monitored changes in Raman spectra of an individual spore during dehydration under vacuum. The results indicated that (1) the state of CaDPA in the core of a spore suspended in water is close to an amorphous solid or a glassy state, but still mixed with water molecules; (2) the ratio of intensities of Raman bands at 1575 and 1017 cm ~(-1) (I _(1575)/I _(1017)) is sensitive to the water content in the CaDPA's environment; (3) variations in I _(1575)/I _(1017) are small (~4%) in a population of dormant Bacillus spores suspended in water; and (4) the I _(1575)/I _(1017) ratio increases significantly during dehydration under vacuum. Consequently, measurement of the I _(1575)/I _(1017) ratio of CaDPA in spores may allow a qualitative estimation of the degree of hydration of the bacterial spore's core.
机译:悬浮在水中的休眠细菌孢子的核心包含大量的二吡啶甲酸(DPA),其螯合有二价阳离子,主要是Ca〜(2+)(CaDPA),被水分子包围。由于CaDPA分子的振动带强度很大程度上取决于CaDPA环境中的水分,因此孢子中CaDPA的拉曼光谱可以确定孢子核的水合状态。我们已经测量了三种芽孢杆菌物种在不同水合状态下的单个孢子的拉曼光谱,包括悬浮在水中,风干和真空干燥的孢子。作为比较,我们还测量了CaDPA和DPA以不同形式(包括在水溶液中,以无定形粉末和结晶形式)的拉曼光谱。我们还监测了在真空下脱水过程中单个孢子的拉曼光谱的变化。结果表明:(1)悬浮在水中的孢子核心中的CaDPA状态接近于无定形固体或玻璃态,但仍与水分子混合。 (2)1575和1017 cm〜(-1)处的拉曼谱带强度比(I _(1575)/ I _(1017))对CaDPA环境中的水分敏感。 (3)在水中悬浮的休眠芽孢杆菌孢子中,I _(1575)/ I _(1017)的变化很小(〜4%); (4)真空干燥过程中I_(1575)/ I_(1017)比明显增加。因此,通过测量孢子中CaDPA的I_(1575)/ I_(1017)比率可以定性评估细菌孢子核心的水合度。

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