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单个蜡样芽孢杆菌T孢子的微量灰化及元素X射线微量分析

Microincineration and elemental X-ray microanalysis of single Bacillus cereus T spores.

作者信息

Scherrer R, Shull V E

出版信息

Can J Microbiol. 1987 Apr;33(4):304-13. doi: 10.1139/m87-052.

Abstract

Single whole spores of bacillus cereus T were analyzed by scanning electron microscopy and electron microprobe X-ray microanalysis before and after high-temperature (600 degrees C) ashing in air. High-temperature ashing consisted of a centripetal oxidation of the spore surface combined with pyrolysis of the spore's interior. Ashing of single spores produced a compact central ash particle, mimicking the much larger unashed spore body in outline but containing craterlike microregions, and a peripheral thin ash film. Ashing mostly eliminated the spore's organic matrix; however, ash residues still gave residual carbon-characteristic X-ray counts. Ashing of single spores produced a two-, five-, and six-fold increase of potassium, magnesium, and calcium X-ray intensities, respectively. Iron, although low in actual counts, became detectable after ashing. Phosphorus characteristic X-rays were decreased by 41% after ashing, while volatilization lowered sodium and manganese X-ray intensities by over 80%. High-temperature ashing enhanced element-characteristic X-ray intensities of the non-volatilizable mineral(ized) elements of spores by compacting them into ash residues, more so than by simply abolishing their organic matrix. Microincineration appears a generally useful preconcentration technique for elemental detection and localization in X-ray microanalysis.

摘要

在空气中进行高温(600摄氏度)灰化前后,利用扫描电子显微镜和电子微探针X射线微分析技术对蜡样芽孢杆菌T的单个完整孢子进行了分析。高温灰化包括孢子表面的向心氧化以及孢子内部的热解。单个孢子的灰化产生了一个致密的中央灰分颗粒,其外形类似于未灰化的大得多的孢子体,但含有火山口状的微区,以及一层外围的薄灰膜。灰化基本上消除了孢子的有机基质;然而,灰分残留物仍给出了残余碳特征X射线计数。单个孢子的灰化分别使钾、镁和钙的X射线强度增加了两倍、五倍和六倍。铁虽然实际计数较低,但灰化后变得可检测到。灰化后磷特征X射线减少了41%,而挥发使钠和锰的X射线强度降低了80%以上。高温灰化通过将孢子的不可挥发矿物(化)元素压实成灰分残留物,增强了这些元素的特征X射线强度,这比简单地去除它们的有机基质更有效。微焚烧似乎是一种在X射线微分析中用于元素检测和定位的普遍有用的预浓缩技术。

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