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Effects of Hyperbaric Pressure on a Deep-Sea Archaebacterium in Stainless Steel and Glass-Lined Vessels

机译:高压对不锈钢和搪玻璃容器中深海古细菌的影响

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The effects of hyperbaric helium pressures on the growth and metabolism of the deep-sea isolate ES4 were investigated. In a stainless steel reactor, cell growth was completely inhibited but metabolic gas production was observed. From 85 to 100°C, CO2 production proceeded two to three times faster at 500 atm (1 atm = 101.29 kPa) than at 8 atm. At 105°C, no CO2 was produced until the pressure was increased to 500 atm. Hydrogen and H2S were also produced biotically but were not quantifiable at pressures above 8 atm because of the high concentration of helium. In a glass-lined vessel, growth occurred but the growth rate was not accelerated by pressure. In most cases at temperatures below 100°C, the growth rate was lower at elevated pressures; at 100°C, the growth rates at 8, 250, and 500 atm were nearly identical. Unlike in the stainless steel vessel, CO2 production was exponential during growth and continued for only a short time after growth. In addition, relatively little H2 was produced in the glass-lined vessel, and there was no growth or gas production at 105°C at any pressure. The behavior of ES4 as a function of temperature and pressure was thus very sensitive to the experimental conditions.
机译:研究了高压氦气压力对深海分离物ES4生长和代谢的影响。在不锈钢反应器中,细胞生长被完全抑制,但是观察到代谢气体的产生。从85到100°C,在500 atm(1 atm = 101.29 kPa)时,CO2的生产速度比8 atm快2至3倍。在105°C下,直到压力升至500 atm为止,才产生CO2。氢气和H2S也是由生物产生的,但由于氦气的浓度很高,因此无法在高于8个大气压的压力下进行定量。在带有玻璃衬里的容器中,发生了生长,但生长速度并未因压力而加速。在大多数情况下,温度低于100°C,在高压下生长速率会降低;在100°C,8、250和500 atm的增长率几乎相同。与不锈钢容器不同,CO2的产生在生长过程中呈指数级增长,并且在生长后仅持续很短的时间。此外,搪玻璃容器中产生的氢气相对较少,并且在任何压力下于105°C都没有生长或产生气体。因此,ES4作为温度和压力的函数的行为对实验条件非常敏感。

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