首页> 外文会议>European Symposium on Life Sciences in Space >GENE EXPRESSION VARIATIONS DURING DROSOPHILA METAMORPHOSIS IN SPACE THE GENE EXPERIMENT IN THE SPANISH CERVANTES MISSION TO THE ISS
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GENE EXPRESSION VARIATIONS DURING DROSOPHILA METAMORPHOSIS IN SPACE THE GENE EXPERIMENT IN THE SPANISH CERVANTES MISSION TO THE ISS

机译:在太空中果蝇变态期间的基因表达变异,西班牙塞万提斯使命中的基因实验

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The ISS expedition 8, a Soyuz Mission, flew to the International Space Station (ISS) to replace the two-member ISS crew during October 2003. During this crew exchanging flight, the Spanish Cervantes Scientific Mission took place. In it some biological experiments were performed among them three proposed by our Team. The third member of the expedition, the Spanish born ESA astronaut Pedro Duque, returned within the Soyuz 7 capsule carrying the experiment containing transport box after almost 11 days in microgravity. In one of the three experiments, the GENE experiment, we intended to determine how microgravity affects the gene expression pattern of Drosophila with one of the current more powerful technologies, a complete Drosophila melanogaster genome microarray (Affymetrix, version 1.0). Due to the constrains in the current ISS experiments, we decided to limit our experiment to the organism rebuilding processes that occurs during Drosophila metamorphosis. In addition to the ISS samples, several control experiments have been performed including a 1g Ground control parallel to the ISS flight samples, a Random Position Machine microgravity simulated control and a parallel Hypergravity (10g) experiment. Extracted RNA from the samples was used to test the differences in gene expression during Drosophila development. A preliminary analysis of the results indicates that around five hundred genes change their expression profiles, many of them belonging to particular ontology classification groups.
机译:国际委员会探险队8,苏兴特派团飞往国际空间站(ISS),以取代2003年10月的双方ISS船员。在这一船员交换航班期间,西班牙塞万特斯科学使命发生了。在它中,一些生物学实验是在我们团队提出的三个中进行的。探险队的第三次成员,西班牙出生的ESA Astronaut Pedro Duque,在Soyuz 7胶囊内返回,在微匍匐近11天后携带含有运输箱的实验。在三个实验之一,基因实验中,我们旨在确定微重力如何影响果蝇的基因表达模式与当前更强大的技术,一个完整的果蝇基因组芯片(Affymetrix公司,1.0版本)中的一个。由于目前的ISS实验中的约束,我们决定将我们的实验限制在果蝇变态期间发生的生物体重建过程。除了ISS样本外,已经进行了几个控制实验,包括与ISS飞行样本平行的1G地控制,随机位置机器微匍匐模拟控制和并行超高起(10G)实验。从样品中提取的RNA用于测试果蝇发育过程中基因表达的差异。初步分析结果表明,大约五百个基因改变了它们的表达谱,其中许多属于特定本体分类组。

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