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温度对异养细菌矿化作用的影响。

Effect of temperature on mineralization by heterotrophic bacteria.

作者信息

Tison D L, Pope D H

出版信息

Appl Environ Microbiol. 1980 Mar;39(3):584-7. doi: 10.1128/aem.39.3.584-587.1980.

Abstract

When pure cultures of the bacteria Pseudomonas fluorescens (a psychrotroph), Escherichia coli (a mesophile), and SRL 261 (a thermophile) were shifted away from temperatures to which they were adapted, the percentage of substrate mineralized increased (percent mineralized = [substrate respired to CO2]/substrate respired to CO2 + substrate incorporated into biomass] X 100). The increase in the percent mineralized was larger for larger temperature shifts. Similar responses were observed when natural heterotrophic bacterial populations from sediments of Lake George, N.Y., and a thermophilic algal-bacterial mat community at the Savannah River Plant, Aiken, S.C., were subjected to temperature shifts. These results suggest that an increase in the percent mineralized may be an indication of thermal stress in bacterial populations.

摘要

当荧光假单胞菌(一种嗜冷菌)、大肠杆菌(一种嗜温菌)和SRL 261(一种嗜热菌)的纯培养物从它们适应的温度转变时,矿化的底物百分比增加(矿化百分比 = [呼吸为二氧化碳的底物]/[呼吸为二氧化碳的底物 + 并入生物量的底物]×100)。温度变化越大,矿化百分比的增加就越大。当对来自纽约州乔治湖沉积物的天然异养细菌群体以及南卡罗来纳州艾肯市萨凡纳河工厂的嗜热藻菌垫群落进行温度变化处理时,也观察到了类似的反应。这些结果表明,矿化百分比的增加可能是细菌群体受到热应激的一个指标。

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