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Regulatory mechanisms related to biofuel tolerance in producing microbes

机译:与微生物生产中的生物燃料耐受性相关的调控机制

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Production of renewable biofuels through either native or engineered microbes has drawn significant attention in recent years, mostly due to the increasing concerns on the energy crisis and the environmental consequences of the overutilization of petroleum-based fuels. Although significant progress has been achieved thus far, further advances are still necessary in order to decrease the manufacturing cost so that the producing processes can be more competitive to petroleum fuels. Among various possible approaches, the increase in biofuel tolerance in microbes has been suggested as one aspect which is important for the success of biofuel production at industry-scale. In this article, we critically summarize recent advances in deciphering regulatory mechanisms for enhancing biofuel tolerance in various micro-organisms, focusing on functions and utilization of several well-studied regulatory mechanisms in microbes, such as two-component signal transduction systems, sigma factors, transcription factors, noncoding RNA and other regulators.
机译:近年来,通过天然微生物或工程微生物生产可再生生物燃料备受关注,这主要是由于人们越来越担心能源危机和过度使用石油基燃料对环境造成的影响。尽管迄今为止已经取得了很大的进步,但是仍然需要进一步的进步以降低制造成本,从而使生产过程对石油燃料更具竞争力。在各种可能的方法中,已提出提高微生物对生物燃料的耐受性是一方面,这对于成功实现工业规模的生物燃料生产至关重要。在本文中,我们批判性地总结了解密各种增强微生物对生物燃料的耐受性的调控机制的最新进展,重点关注微生物中几种经过深入研究的调控机制的功能和利用,例如两组分信号转导系统,sigma因子,转录因子,非编码RNA和其他调控因子。

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