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Rapid Acquisition of Gigapascal-High-Pressure Resistance by Escherichia coli

机译:大肠埃希氏菌快速获得了吉加帕斯卡高压抗性

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摘要

Pressure and temperature are important environmental variables that influence living systems. However, while they vary over a considerable range on Earth and other planets, it has hardly been addressed how straightforwardly and to what extent cellular life can acquire resistance to extremes of these parameters within a defined genomic context and a limited number of generations. Nevertheless, this is a very pertinent question with respect to the penetration of life in allegedly inhospitable environments. In this study, directed evolution was used to reveal the potential of the nonsporulating and mesophilic model bacterium Escherichia coli to develop the ability to survive exposure to high temperature or pressure. While heat resistance could only marginally be increased, our data show that piezoresistance could readily and reproducibly be extended into the GPa range, thereby greatly exceeding the currently recognized maximum for growth or survival.
机译:压力和温度是影响生命系统的重要环境变量。然而,尽管它们在地球和其他行星上的相当大的范围内变化,但是几乎没有人解决过在限定的基因组背景和有限的世代内,细胞生命如何能够在多大程度上直接抵抗这些参数的极限。然而,这是关于在所谓的恶劣环境中生活渗透的一个非常相关的问题。在这项研究中,定向进化被用来揭示非孢子性和嗜温模型细菌大肠埃希氏菌在暴露于高温或高压下生存的能力。虽然只能稍微提高耐热性,但我们的数据表明,压阻可以轻松且可重复地扩展到GPa范围内,从而大大超过了目前公认的生长或存活最大值。

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