Arieli B, Schneegurt M A, Sherman L A
NASA Specialized Center of Research and Training and Department of Biological Sciences, Purdue University, W. Lafayette, IN 47907, USA.
Life Support Biosph Sci. 1996 Winter;2(3-4):145-60.
Long-duration manned space missions will likely require the development of bioregenerative means of life support. Such a Controlled Ecological Life Support System (CELSS) would use higher plants to provide food and a breathable atmosphere for the crew and employ a waste processing system to recover elements for recycling. The current study identifies ways in which a cyanobacterial component may enhance the sustainability of a space-deployed CELSS, including balancing CO2/O2 gas exchange, production of bioavailable N, dietary supplementation, and contingency against catastrophic failure of the higher plant crops. Relevant quantitative data have been collected about the cyanobacterium, Cyanothece sp. strain ATCC 51142, a large, aerobic, unicellular diazotroph. This organism grew rapidly (466 g dry wt. m-3 d-1) and under diverse environmental conditions, was amenable to large-scale culture, could be grown with relative energy efficiency (3.8% conversion), could actively fix atmospheric N2 (35.0 g m-3 d-1), could survive extreme environmental insults, and exhibited gas exchange properties (assimilatory quotient of 0.49) that may be useful for correcting the gas exchange ratio imbalances observed between humans and higher plants. It is suggested that a diazotrophic cyanobacterium, like Cyanothece sp. strain ATCC 51142, may be a safe, effective, and renewable complement or alternative to physicochemical backup systems in a CELSS.
长期载人航天任务可能需要开发生物再生生命支持手段。这样一个受控生态生命支持系统(CELSS)将利用高等植物为宇航员提供食物和可呼吸的大气,并采用废物处理系统回收元素以供循环利用。当前的研究确定了蓝藻成分可以提高太空部署的CELSS可持续性的方式,包括平衡二氧化碳/氧气气体交换、生产生物可利用的氮、膳食补充以及应对高等植物作物灾难性失败的应急措施。已经收集了关于蓝藻Cyanothece sp.菌株ATCC 51142的相关定量数据,它是一种大型、需氧、单细胞固氮菌。这种生物生长迅速(466克干重·立方米⁻¹·天⁻¹),在各种环境条件下都适合大规模培养,能够以相对较高的能量效率生长(转化率为3.8%),能够积极固定大气中的氮气(35.0克·立方米⁻¹·天⁻¹),能够在极端环境冲击下存活,并且表现出的气体交换特性(同化商为0.49)可能有助于纠正人类与高等植物之间观察到的气体交换比率失衡。有人提出,像Cyanothece sp.菌株ATCC 51142这样的固氮蓝藻可能是CELSS中物理化学备用系统的安全、有效且可再生的补充或替代方案。