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Arabidopsis 生物学——在微重力条件下进行植物分子分析的新实验平台:包括在落塔、抛物线飞行和探空火箭中开展的实验。

ARABIDOMICS-A new experimental platform for molecular analyses of plants in drop towers, on parabolic flights, and sounding rockets.

机构信息

Gravitational Biology, Institute of Aerospace Medicine, German Aerospace Center (DLR), 51147 Cologne, Germany.

Department of Molecular Ecology, Max-Planck-Institute for Chemical Ecology, 07745 Jena, Germany.

出版信息

Rev Sci Instrum. 2020 Mar 1;91(3):034504. doi: 10.1063/1.5120573.

Abstract

Plants represent an essential part of future life support systems that will enable human space travel to distant planets and their colonization. Therefore, insights into changes and adaptations of plants in microgravity are of great importance. Despite considerable efforts, we still know very little about how plants respond to microgravity environments on the molecular level, partly due to a lack of sufficient hardware and flight opportunities. The plant Arabidopsis thaliana, the subject of this study, represents a well-studied model organism in gravitational biology, particularly for the analysis of transcriptional and metabolic changes. To overcome the limitations of previous plant hardware that often led to secondary effects and to allow for the extraction not only of RNA but also of phytohormones and proteins, we developed a new experimental platform, called ARABIDOMICS, for exposure and fixation under altered gravity conditions. Arabidopsis seedlings were exposed to hypergravity during launch and microgravity during the free-fall period of the MAPHEUS 5 sounding rocket. Seedlings were chemically fixed inflight at defined time points, and RNA and phytohormones were subsequently analyzed in the laboratory. RNA and phytohormones extracted from the fixed biological samples were of excellent quality. Changes in the phytohormone content of jasmonate, auxin, and several cytokinins were observed in response to hypergravity and microgravity.

摘要

植物是未来生命支持系统的重要组成部分,将使人类能够进行到遥远行星的太空旅行和殖民化。因此,深入了解微重力下植物的变化和适应具有重要意义。尽管已经做出了相当大的努力,但我们仍然不太了解植物在分子水平上对微重力环境的反应,部分原因是缺乏足够的硬件和飞行机会。本研究以拟南芥(Arabidopsis thaliana)为研究对象,它是在重力生物学中得到广泛研究的模式生物,特别适合分析转录和代谢变化。为了克服以前植物硬件的局限性,这些硬件通常会导致次生效应,并不仅允许提取 RNA,还允许提取植物激素和蛋白质,我们开发了一种新的实验平台,称为 ARABIDOMICS,用于在改变的重力条件下进行暴露和固定。拟南芥幼苗在发射过程中经历超重力,在 MAPHEUS 5 sounding 火箭的自由落体期间经历微重力。在飞行过程中,幼苗在定义的时间点进行化学固定,随后在实验室中分析 RNA 和植物激素。从固定生物样本中提取的 RNA 和植物激素质量非常好。观察到茉莉酸、生长素和几种细胞分裂素的植物激素含量因超重力和微重力而发生变化。

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