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Growth of a Bacterium Under a High-Pressure Oxy-Helium Atmosphere

机译:高压氧氦气氛下细菌的生长

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摘要

Growth of a barotolerant marine organism, EP-4, in a glutamate medium equilibrated with an oxy-helium atmosphere at 500 atmospheres (atm; total pressure) (20°C) was compared with control cultures incubated at hydrostatic pressures of 1 and 500 atm. Relative to the 1-atm control culture, incubation of EP-4 at 500 atm in the absence of an atmosphere resulted in an approximately fivefold reduction in the growth rate and a significant but time variant reduction in the rate constants for the incorporation of substrate into cell material and respiration. Distinct from the pressurized control and separate from potential effects of dissolution of helium upon decompression of subsamples, exposure of the organism to high-pressure oxy-helium resulted in either a loss of viability of a large fraction of the cells or the arrest of growth for one-third of the experimental period. After these initial effects, however, the culture grew exponentially at a rate which was three times greater than the 500-atm control culture. The rate constant for the incorporation of substrate into cell material was also enhanced twofold in the presence of high-pressure oxy-helium. Dissolved oxygen was well controlled in all of the cultures, minimizing any potential toxic effects of this gas.
机译:将在500个大气压(atm;总压力)(20°C)和氧气-氦气气氛平衡的谷氨酸培养基中耐压海洋生物EP-4的生长与在1和500 atm静水压力下培养的对照培养物进行比较。相对于1-atm对照培养物,在没有大气的情况下于500 atm孵育EP-4会导致生长速率降低大约五倍,并且将底物掺入其中的速率常数显着但时变地降低。细胞物质和呼吸。与加压控制不同,并且与子样品减压后氦气溶解的潜在影响分开,该生物体暴露于高压氧-氦气会导致大部分细胞丧失活力或阻止其生长。实验期的三分之一。然而,在这些最初的作用之后,培养物以指数增长,其生长速度是500个大气压对照培养物的三倍。在高压氧氦气存在下,将底物掺入电池材料的速率常数也提高了两倍。在所有培养物中,溶解氧均得到良好控制,从而最大程度地减少了该气体的任何潜在毒性作用。

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