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首页> 外文期刊>Microgravity science and technology >Drosophila GENE Experiment in the Spanish Soyuz Mission to the ISS: II. Effects of the Containment Constraints
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Drosophila GENE Experiment in the Spanish Soyuz Mission to the ISS: II. Effects of the Containment Constraints

机译:果蝇GENE在西班牙联盟号国际空间站的实验:II。围堵约束的影响

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In the GENE experiment performed during an 11-day Soyuz Mission to the International Space Station (ISS), we intended to determine if microgravity affects Drosophila metamorphosis processes. Control experiments were performed including a 1g ground control parallel to the ISS flight samples and a Random Position Machine microgravity simulated control. A preliminary analysis of the results indicates that five hundred to one thousand genes change their expression profiles depending on the cut-off levels selected. Especially affected among them are the mitochondrial ones (an example with the respiratory chain is presented). We show here that there is a synergic effect of the constraints introduced to meet the requirements of the space experiment (mainly, a cold step and the use of hermetically closed Type-I containers). The cold transport step to the launch site was introduced to slow down the pupal development. The hermetically closed Type I containers were required to ensure the containment of the fixative (acetone) in the experiment. As shown here, the oxygen concentration inside the container was not optimal but fully compatible with pupal development. It is highly likely that such combined environmental effects will become a common finding in these types of studies as they become more complicated and extensive. They could open the way to understand how the gene expression patterns and the actual phe-notypes can adjust to the environment. These findings indicate the importance of a vigorous ground based program in support of real microgravity experiments. Only then we can utilize the ISS in order to understand the consequences of the modified environment in outer space on living organisms.
机译:在为期11天的联盟号国际空间站(ISS)任务中进行的GENE实验中,我们打算确定微重力是否会影响果蝇的变态过程。进行了对照实验,包括与ISS飞行样品平行的1g地面对照和随机位置机器微重力模拟对照。对结果的初步分析表明,五百到一千个基因根据选择的临界水平改变其表达谱。其中尤其受影响的是线粒体的线粒体(以呼吸链为例)。我们在这里表明,为了满足空间实验的要求(主要是冷步和使用密闭的I型容器的使用)而引入的约束条件具有协同作用。引入了到发射场的冷运输步骤以减慢the的发育。需要使用密闭的I型容器来确保实验中固定剂(丙酮)的容纳。如此处所示,容器内的氧气浓度不是最佳的,但与p发育完全相容。随着这些复杂的环境变得越来越复杂和广泛,这种综合的环境影响很可能会成为这类研究的普遍发现。他们可以为了解基因表达模式和实际表型如何适应环境开辟道路。这些发现表明,有力的地面计划对支持真正的微重力实验的重要性。只有这样,我们才能利用国际空间站来了解外层空间环境的变化对生物的影响。

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