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Screening and genetic manipulation of green organisms for establishment of biological life support systems in space

机译:筛选和遗传操作绿色生物以建立太空生物生命支持系统

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摘要

Curiosity has driven humankind to explore and conquer space. However, today, space research is not a means to relieve this curiosity anymore, but instead has turned into a need. To support the crew in distant expeditions, supplies should either be delivered from the Earth, or prepared for short durations through physiochemical methods aboard the space station. Thus, research continues to devise reliable regenerative systems. Biological life support systems may be the only answer to human autonomy in outposts beyond Earth. For construction of an artificial extraterrestrial ecosystem, it is necessary to search for highly adaptable super-organisms capable of growth in harsh space environments. Indeed, a number of organisms have been proposed for cultivation in space. Meanwhile, some manipulations can be done to increase their photosynthetic potential and stress tolerance. Genetic manipulation and screening of plants, microalgae and cyanobacteria is currently a fascinating topic in space bioengineering. In this commentary, we will provide a viewpoint on the realities, limitations and promises in designing biological life support system based on engineered and/or selected green organism. Special focus will be devoted to the engineering of key photosynthetic enzymes in pioneer green organisms and their potential use in establishment of transgenic photobioreactors in space.
机译:好奇心驱使人类探索和征服太空。但是,如今,太空研究已不再是减轻这种好奇心的一种手段,而是变成了一种需求。为了支持机组人员进行远距离探险,应从地球上运送补给品,或通过空间站上的理化方法在短期内准备补给品。因此,研究继续设计出可靠的再生系统。生物生命支持系统可能是地球以外前哨站人类自治的唯一答案。为了构建人造的外星生态系统,有必要寻找能够在恶劣的空间环境中生长的高度适应的超生物。实际上,已经提出了许多生物用于太空栽培。同时,可以进行一些操作以增加其光合潜力和胁迫耐受性。植物,微藻类和蓝细菌的遗传操作和筛选目前是空间生物工程领域的一个引人入胜的话题。在这篇评论中,我们将就基于工程和/或选择的绿色生物体设计生物生命支持系统的现实,局限性和前景提供一个观点。将特别关注先锋绿色生物中关键的光合酶的工程设计及其在空间中建立转基因光生物反应器的潜在用途。

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