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首页> 外文期刊>Applied and Environmental Microbiology >Comparative Physiological Studies on Hyperthermophilic Archaea Isolated from Deep-Sea Hot Vents with Emphasis on Pyrococcus Strain GB-D
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Comparative Physiological Studies on Hyperthermophilic Archaea Isolated from Deep-Sea Hot Vents with Emphasis on Pyrococcus Strain GB-D

机译:从深海热气孔中分离出以嗜热球菌GB-D为重点的嗜热古细菌的比较生理研究

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Three new sulfur- or non-sulfur-dependent archaeal isolates, including a Pyrococcus strain, from Guaymas Basin hydrothermal vents (Gulf of California; depth, 2,010 m) were characterized and physiologically compared with four known hyperthermophiles, previously isolated from other vent sites, with an emphasis on growth and survival under the conditions particular to the natural habitat. Incubation under in situ pressure (200 atm [1 atm = 101.29 kPa]) did not increase the maximum growth temperature by more than 1°C for any of the organisms but did result in increases in growth rates of up to 15% at optimum growth temperatures. At in situ pressure, temperatures considerably higher than those limiting growth (i.e., > 105°C) were survived best by isolates with the highest maximum growth temperatures, but none of the organisms survived at temperatures of 150°C or higher for 5 min. Free oxygen was toxic to all isolates at growth range temperatures, but at ambient deep-sea temperature (3 to 4°C), the effect varied in different isolates, the non-sulfur-dependent isolate being the most oxygen tolerant. Hyperthermophiles could be isolated from refrigerated and oxygenated samples after 5 years of storage. Cu, Zn, and Pb ions were found to be toxic under nongrowth conditions (absence of organic substrate), with the non-sulfur-dependent isolate again being the most tolerant.
机译:从瓜伊马斯盆地热液喷口(加利福尼亚湾;深度为2,010 m)中,鉴定了三种新的硫或非硫依赖性古细菌分离物,包括热球菌菌株,并与先前从其他喷口部位分离的四种已知的超嗜热菌进行了生理比较,强调在自然栖息地特定条件下的生长和生存。在原位压力下孵育(200 atm [1 atm = 101.29 kPa])不会使任何一种生物体的最高生长温度提高超过1°C,但在最佳条件下的生长速度最多可提高15%生长温度。在原位压力下,具有最高最大生长温度的分离株能够最好地存活比限制生长的温度(即> 105°C)高得多的温度,但是没有任何一种生物在150°C或更高的温度下能够存活5分钟。游离氧在生长温度范围内对所有分离株都有毒,但是在周围深海温度(3至4°C)下,不同分离株的作用不同,非硫依赖性分离株对氧气的耐受性最高。存放5年后,可以从冷藏和充氧样品中分离出嗜热菌。发现Cu,Zn和Pb离子在非生长条件下(无有机底物)有毒,非硫依赖的分离物再次具有最大的耐受性。

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