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BIM LAU-PE: SEEDLINGS IN MICROGRAVITY

机译:BIM LAU-PE:微重力中的幼苗

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摘要

The effect of gravity on plant roots is an intensive subject of research. Sounding rockets represent a cost-effective platform to study this effect under micro-gravity conditions. As part of the upcoming MASER 13 sounding rocket campaign, two experiments on Arabidopsis thaliana seedlings have been devised: GRAMAT and SPARC. These experiments are aimed at studying (1) the genes that are specifically switched on or off during microgravity, and (2) the position of auxin-transporting proteins during microgravity. To perform these experiments, RUAG Space Switzerland site of Nyon, in collaboration with the Swedish Space Corporation (SSC) and the University of Freiburg, has developed the BIM LAU-PE (Biolology In Microgravity Late Access Unit Plant Experiment). In the following an overview of the BIM LAU-PE design is presented, highlighting specific module design features and verifications performed. A particular emphasis is placed on the parabolic flight experiments, including results of the micro-g injection system validation.
机译:重力对植物根系的影响是研究的重点。探空火箭代表了一种在微重力条件下研究这种效应的具有成本效益的平台。作为即将进行的MASER 13探空火箭战的一部分,已经设计了两个拟南芥幼苗实验:GRAMAT和SPARC。这些实验旨在研究(1)在微重力作用下特异性开启或关闭的基因,以及(2)在微重力作用下生长素转运蛋白的位置。为了进行这些实验,瑞士尼昂的RUAG太空瑞士基地与瑞典航天公司(SSC)和弗莱堡大学合作,开发了BIM LAU-PE(微重力后期访问单元植物实验中的生物学)。在下面的内容中,将介绍BIM LAU-PE设计的概述,重点介绍特定的模块设计功能和执行的验证。特别强调抛物线飞行实验,包括micro-g注入系统验证的结果。

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