Drosophila melanogaster, a model system for comparative studies on the responses to real and simulated microgravity.

R Marco, D A Laván, J J W A van Loon, L J Leandro, O J Larkin, C Dijkstra, P Anthony, A Villa, M R Davey, K C Lowe, J B Power, F J Medina
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Abstract

A key requirement to enhance our understanding of the response of biological organisms to different levels of gravity is the availability of experimental systems that can simulate microgravity and hypergravity in ground-based laboratories. This paper compares the results obtained from analysing gene expression profiles of Drosophila in space versus those obtained in a random position machine (RPM) and by centrifugation. The correlation found validates the use of the RPM simulation technique to establish the effects of real microgravity on biological systems. This work is being extended to investigate Drosophila development in another gravity modifying instrument, the levitation magnet.

果蝇,一个模型系统,对真实和模拟微重力的反应进行比较研究。
提高我们对生物有机体对不同重力水平的反应的理解的一个关键要求是可以在地面实验室模拟微重力和超重力的实验系统的可用性。本文比较了在太空中分析果蝇基因表达谱的结果与在随机定位机(RPM)和离心中获得的结果。发现的相关性验证了使用RPM模拟技术来建立真实微重力对生物系统的影响。这项工作正在被扩展到研究果蝇在另一种重力调节仪器——悬浮磁铁上的发育。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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