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Pressurized Martian-Like Pure CO2 Atmosphere Supports Strong Growth of Cyanobacteria and Causes Significant Changes in their Metabolism

机译:加压的类似火星的纯CO2气氛支持蓝细菌的强劲生长并导致其代谢发生重大变化

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摘要

Surviving of crews during future missions to Mars will depend on reliable and adequate supplies of essential life support materials, i.e. oxygen, food, clean water, and fuel. The most economical and sustainable (and in long term, the only viable) way to provide these supplies on Martian bases is via bio-regenerative systems, by using local resources to drive oxygenic photosynthesis. Selected cyanobacteria, grown in adequately protective containment could serve as pioneer species to produce life sustaining substrates for higher organisms. The very high (95.3 %) CO2 content in Martian atmosphere would provide an abundant carbon source for photo-assimilation, but nitrogen would be a strongly limiting substrate for bio-assimilation in this environment, and would need to be supplemented by nitrogen fertilizing. The very high supply of carbon, with rate-limiting supply of nitrogen strongly affects the growth and the metabolic pathways of the photosynthetic organisms. Here we show that modified, Martian-like atmospheric composition (nearly 100 % CO2) under various low pressure conditions (starting from 50 mbar to maintain liquid water, up to 200 mbars) supports strong cellular growth. Under high CO2 / low N2 ratio the filamentous cyanobacteria produce significant amount of H2 during light due to differentiation of high amount of heterocysts.
机译:在未来前往火星的任务中,机组人员的生存将取决于可靠和充足的必需生命支持材料,例如氧气,食物,清洁的水和燃料。在火星基地提供这些物资的最经济和可持续的方式(从长远来看,是唯一可行的方式)是通过生物再生系统,利用当地资源来驱动氧气的光合作用。在足够的保护性环境中生长的选定蓝细菌可以作为为高等生物生产维持生命的底物的先锋物种。火星大气中很高的(95.3%)CO2含量将为光同化提供丰富的碳源,但是在这种环境下,氮将成为生物同化的强烈限制底物,并且需要通过施氮来补充氮。极高的碳供应量和氮的限速供应量极大地影响了光合生物的生长和代谢途径。在这里我们表明,在各种低压条件下(从50毫巴开始保持液态水,直到200毫巴),经过修饰的类似火星的大气成分(接近100%CO2)支持强大的细胞生长。在高CO2 /低N2比下,由于大量异型囊的分化,丝状蓝细菌在光照过程中会产生大量H2。

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