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首页> 外文期刊>Journal of applied microbiology >Deinococcus as new chassis for industrial biotechnology: biology, physiology and tools
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Deinococcus as new chassis for industrial biotechnology: biology, physiology and tools

机译:Deinococcus作为工业生物技术的新底盘:生物学,生理学和工具

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Deinococcus spp are among the most radiation-resistant micro-organisms that have been discovered. They show remarkable resistance to a range of damage caused by ionizing radiation, desiccation, UV radiation and oxidizing agents. Traditionally, Escherichia coli and Saccharomyces cerevisiae have been the two platforms of choice for engineering micro-organisms for biotechnological applications, because they are well understood and easy to work with. However, in recent years, researchers have begun using Deinococcus spp in biotechnologies and bioremediation due to their specific ability to grow and express novel engineered functions. More recently, the sequencing of several Deinococcus spp and comparative genomic analysis have provided new insight into the potential of this genus. Features such as the accumulation of genes encoding cell cleaning systems that eliminate organic and inorganic cell toxic components are widespread among Deinococcus spp. Other features such as theability to degrade and metabolize sugars and polymeric sugars makeDeinococcus spp. an attractive alternative for use in industrial biotechnology.
机译:Deinococcus spp是已发现的最抗辐射的微生物之一。它们对由电离辐射,干燥,紫外线辐射和氧化剂引起的一系列损害显示出卓越的抵抗力。传统上,大肠杆菌和酿酒酵母已成为生物技术应用微生物工程微生物的两个选择平台,因为它们易于理解且易于使用。但是,近年来,研究人员已经开始将Deinococcus spp用于生物技术和生物修复,因为它们具有生长和表达新的工程功能的特殊能力。最近,几个Deinococcus spp的测序和比较基因组分析提供了对该属潜力的新见解。 Deinococcus spp中普遍存在诸如消除细胞有机和无机毒性成分的编码细胞清洁系统的基因积累等功能。其他特征如糖和聚合糖的降解和代谢能力使Deinococcus spp。用于工业生物技术的有吸引力的替代方法。

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