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The 'Gene' Experiment in the Spanish Soyuz Mission to the ISS. Effects of the cold transportation step

机译:西班牙联盟号国际空间站的“基因”实验。冷运输步骤的影响

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If exploration of outer space is going to be a major human enterprise in the future, it is important to establish the nature of the biological response to the space environment. In one of the recent Soyuz missions to serve the ISS, the Spanish Soyuz Mission in October 2003, we sent a group of Drosophila pupae that underwent almost complete development there. Microarray analyses of the RNAs extracted from flies fixed in the ISS revealed that a relatively large set of genes (15% of the total number assayed) suffered a significant expression change in these conditions. Furthermore, the samples had to be transported to the launch site and it was necessary to slow down their development by exposing them to a lower temperature, fully compatible with pupal development. Such a pre-exposure had an effect by itself on the pattern of gene expression observed after pupal development at normal temperature, but the two environmental factors seemed to act synergistically together with the containment in the type I container. These findings indicate the importance of maintaining a vigorous scientific program in the ISS to understand the consequences of the modified environment in outer space on living organisms.
机译:如果未来探索外层空间将成为人类的主要任务,那么确定对空间环境的生物反应的性质就很重要。在2003年10月进行的为国际空间站服务的联盟号任务中的一项,即西班牙联盟号任务,我们派遣了一组果蝇p,在那里进行了几乎完整的开发。对从固定在国际空间站中的果蝇中提取的RNA进行的微阵列分析显示,在这些条件下,相对较大的一组基因(占所测定总数的15%)遭受了明显的表达变化。此外,必须将样品运输到发射场,并且有必要通过将其暴露于与p发育完全相容的较低温度来减慢其发育。这种预暴露本身对在常温下p发育后观察到的基因表达模式有影响,但是这两个环境因素似乎与I型容器中的容器协同作用。这些发现表明,在国际空间站中保持有力的科学程序以了解外层空间环境变化对生物的后果的重要性。

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