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首页> 外文期刊>Acta astronautica >Haploid deletion strains of Saccharomyces cerevisiae that determine survival during space flight
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Haploid deletion strains of Saccharomyces cerevisiae that determine survival during space flight

机译:酿酒酵母的单倍体缺失菌株决定了航天飞行的存活

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This study identifies genes that determine survival during a space flight, using the model eukaryotic organism, Saccharomyces cerevisiae. Select strains of a haploid yeast deletion series grew during storage in distilled water in space, but not in ground based static or clinorotation controls. The survival advantages in space in distilled water include a 133-fold advantage for the deletion of PEX19, a chaperone and import receptor for newly- synthesized class I peroxisomal membrane proteins, to 77-40 fold for deletion strains lacking elements of aerobic respiration, isocitrate metabolism, and mitochondrial electron transport. Following automated addition of rich growth media, the space flight was associated with a marked survival advantage of strains with deletions in catalytically active genes including hydrolases, oxidoreductases and transferases. When compared to static controls, space flight was associated with a marked survival disadvantage of deletion strains lacking transporter, antioxidant and catalytic activity. This study identifies yeast deletion strains with a survival advantage during storage in distilled water and space flight, and amplifies our understanding of the genes critical for survival in space.
机译:这项研究使用模型真核生物酿酒酵母(Saccharomyces cerevisiae)鉴定了确定太空飞行中存活率的基因。单倍体酵母缺失系列的精选菌株在太空中的蒸馏水中储存期间生长,但在地面的静态或倾斜旋转对照中则没有。蒸馏水中空间的生存优势包括删除PEX19(伴侣和新合成的I类过氧化物酶体膜蛋白的进口受体)的133倍优势,到缺失缺乏需氧呼吸成分的异菌株的77-40倍优势。代谢和线粒体电子传输。自动添加丰富的生长培养基后,太空飞行与具有催化活性基因(包括水解酶,氧化还原酶和转移酶)缺失的菌株具有明显的生存优势。当与静态对照相比时,太空飞行与缺乏转运蛋白,抗氧化剂和催化活性的缺失菌株的明显存活劣势有关。这项研究确定了在蒸馏水和太空飞行过程中具有生存优势的酵母缺失菌株,并加深了我们对对于太空生存至关重要的基因的理解。

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