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Spatially Resolved Characterization of Water and Ion Incorporation in Bacillus Spores

机译:水和离子结合在芽孢杆菌中的空间分辨特征

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We present the first direct visualization and quantification of water and ion uptake into the core of individual dormant Bacillus thuringiensis subsp. israelensis (B. thuringiensis subsp. israelensis) endospores. Isotopic and elemental gradients in the B. thuringiensis subsp. israelensis spores show the permeation and incorporation of deuterium in deuterated water (D2O) and solvated ions throughout individual spores, including the spore core. Under hydrated conditions, incorporation into a spore occurs on a time scale of minutes, with subsequent uptake of the permeating species continuing over a period of days. The distribution of available adsorption sites is shown to vary with the permeating species. Adsorption sites for Li+, Cs+, and Cl? are more abundant within the spore outer structures (exosporium, coat, and cortex) relative to the core, while F? adsorption sites are more abundant in the core. The results presented here demonstrate that elemental abundance and distribution in dormant spores are influenced by the ambient environment. As such, this study highlights the importance of understanding how microbial elemental and isotopic signatures can be altered postproduction, including during sample preparation for analysis, and therefore, this study is immediately relevant to the use of elemental and isotopic markers in environmental microbiology and microbial forensics.
机译:我们提出了对单个休眠苏云金芽孢杆菌亚种核心的水和离子吸收的首次直接可视化和量化。以色列(苏云金芽孢杆菌亚种israelensis)内生孢子。苏云金芽孢杆菌亚种中的同位素和元素梯度。以色列孢子显示氘在氘化水(D2O)中和贯穿整个单个孢子(包括孢子核心)的溶剂化离子的渗透和结合。在水合条件下,掺入孢子的时间范围为数分钟,随后渗透性物质的吸收持续数天。可用吸附位点的分布显示为随渗透物种而变化。 Li +,Cs +和Cl?的吸附位相对于核心,孢子的外部结构(外孢子,外皮和皮层)中的碳含量更高,而F?核心处的吸附位更丰富。此处显示的结果表明,休眠孢子中的元素丰度和分布受周围环境的影响。因此,这项研究强调了了解如何在生产后,包括在分析样品制备过程中改变微生物元素和同位素特征的重要性,因此,这项研究与环境微生物学和微生物法医学中元素和同位素标志物的使用直接相关。 。

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