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细菌的差示扫描量热法

Differential scanning calorimetry of bacteria.

作者信息

Miles C A, Mackey B M, Parsons S E

出版信息

J Gen Microbiol. 1986 Apr;132(4):939-52. doi: 10.1099/00221287-132-4-939.

Abstract

Thermograms obtained by differential scanning calorimetry of a range of bacteria of different heat resistances were compared. Equations were derived to calculate the rate at which the numbers of viable organisms in a calorimeter decline as the temperature is raised at a constant rate. Vegetative bacteria scanned at 10 degrees C min-1 showed multi-peaked thermograms with four major peaks (denoted m, n, p and q) occurring in the regions 68-73, 77-84, 89-99 and 105-110 degrees C respectively. Exceptions were that peak m (the largest peak) occurred at 79-82 degrees C in Bacillus stearothermophilus and an additional peak, r, was detected in Escherichia coli at 119 degrees C. At temperatures below the main peak m there were major differences in thermograms between species. There was a direct relationship between the onset of thermal denaturation and the thermoresistance of different organisms. Heat-sensitive organisms displayed thermogram features which were absent in the more heat-resistant types. When samples were cooled to 5 degrees C and re-heated, a small endothermic peak, pr, was observed at the same temperature as p. Peaks p and pr were identified as the melting endotherms of DNA. In all vegetative organisms examined, maximum death rates, computed from published D and z values, occurred at temperatures above the onset of thermal denaturation, i.e. cell death and irreversible denaturation of cell components occurred within the same temperature range.

摘要

对通过差示扫描量热法获得的一系列具有不同耐热性的细菌的热谱图进行了比较。推导了一些方程式,以计算量热计中活生物体数量随温度以恒定速率升高而下降的速率。以10℃/分钟的速度扫描的营养细菌显示出多峰热谱图,分别在68 - 73℃、77 - 84℃、89 - 99℃和105 - 110℃区域出现四个主要峰(分别表示为m、n、p和q)。例外情况是,嗜热脂肪芽孢杆菌的峰m(最大峰)出现在79 - 82℃,并且在大肠杆菌中于119℃检测到一个额外的峰r。在低于主峰m的温度下,不同物种的热谱图存在主要差异。热变性的起始与不同生物体的耐热性之间存在直接关系。热敏性生物体显示出耐热性更强的类型所没有的热谱图特征。当样品冷却至5℃并重新加热时,在与p相同的温度下观察到一个小的吸热峰pr。峰p和pr被确定为DNA的解链吸热峰。在所有检测的营养生物体中,根据已发表的D值和z值计算出的最大死亡率发生在热变性起始温度以上,即细胞死亡和细胞成分的不可逆变性发生在同一温度范围内。

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