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Genes that move the window of viability of life: Lessons from bacteria thriving at the cold extreme

机译:改变生命力窗口的基因:细菌在寒冷的极端条件下兴旺发展的教训

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摘要

Whether occurrence of life at the physicochemical extremes results from the entire adaptation of organisms to such settings or it originates from the action of a few genes has been debated for a long time. Recent evidence suggests that a limited number of functions suffice to change the predilection of microorganisms for radically different environmental scenarios. For instance, expression of a few genes from cold-loving bacteria in mesophilic hosts allows them to grow at much lower temperatures and become heat-sensitive. This has been exploited not only for constructing Escherichia coli strains able to grow at 5–10?°C (and thus optimised as hosts for heterologous gene expression) but also for designing vaccines based on temperature-sensitive pathogens. Occurrence of genes/functions that reframe the windows of viability may also ask for a revision of some concepts in microbial ecology and may provide new tools for engineering bacteria with a superior biotechnological performance.
机译:在生物化学极端条件下出现生命是由生物体完全适应这种环境导致的还是由少数基因的作用引起的,这一问题已经争论了很长时间。最近的证据表明,对于根本不同的环境情况,有限数量的功能足以改变微生物的偏好。例如,嗜温宿主中嗜冷细菌的一些基因表达使它们能够在更低的温度下生长并变得对热敏感。它不仅被用于构建能够在5-10°C下生长的大肠杆菌菌株(并因此被优化为用于异源基因表达的宿主),还被用于基于温度敏感病原体的疫苗设计。重新构筑生存能力窗口的基因/功能的出现也可能要求对微生物生态学的某些概念进行修订,并可能为工程菌提供具有卓越生物技术性能的新工具。

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