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Photometric immersion refractometry of bacterial spores.

机译:细菌孢子的光度浸没折光法。

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摘要

Photometric immersion refractometry was used to determine the average apparent refractive index (n) of five types of dormant Bacillus spores representing a 600-fold range in moist-heat resistance determined as a D100 value. The n of a spore type increased as the molecular size of various immersion solutes decreased. For comparison of the spore types, the n of the entire spore and of the isolated integument was determined by use of bovine serum albumin, which is excluded from permeating into them. The n of the sporoplast (the structures bounded by the outer pericortex membrane) was determined by use of glucose, which was shown to permeate into the spore only as deeply as the pericortex membrane. Among the various spore types, an exponential increase in the heat resistance correlated with the n of the entire spore and of the sporoplast, but not of the isolated perisporoplast integument. Correlation of the n with the solids content of the entire spore provided a method of experimentally obtaining the refractive index increment (dn/dc), which was constant for the various spore types and enables the calculation of solids and water content from an n. Altogether, the results showed that the total water content is distributed unequally within the dormant spore, with less water in the sporoplast than in the perisporoplast integument, and that the sporoplast becomes more refractile and therefore more dehydrated as the heat resistance becomes greater among the various spore types.
机译:光度浸没折光法用于确定代表D100值的湿热电阻的600倍范围的五种休眠芽孢杆菌孢子的平均表观折射率(n)。孢子型的n随着各种浸没溶质的分子大小的减少而增加。为了比较孢子类型,通过使用牛血清白蛋白确定整个孢子和分离的外皮的n,将其排除在其中之外。孢子体的n(由外皮层外膜界定的结构)是通过使用葡萄糖确定的,葡萄糖显示出的渗透深度仅与皮层外膜一样深。在各种孢子类型中,耐热性的指数增加与整个孢子和孢子体的n相关,但与分离的孢子体外被膜无关。 n与整个孢子固体含量的相关性提供了一种通过实验获得折射率增量(dn / dc)的方法,该折射率增量对于各种孢子类型都是恒定的,并且可以从n计算固体和水含量。总而言之,结果表明,在休眠孢子中,总水分不均匀地分布,孢子体中的水分少于周孢子体中的水分,并且随着耐热性的提高,孢子体变得更易折射并因此脱水更多。孢子类型。

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