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Germination of Arabidopsis Seed in Space and in Simulated Microgravity: Alterations in Root Cell Growth and Proliferation

机译:拟南芥种子在空间和模拟微重力中的萌发:根细胞生长和增殖的变化。

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Changes have been reported in the pattern of gene expression in Arabidopsis on exposure to microgravity. Plant cell growth and proliferation are functions that are potentially affected by such changes in gene expression. In the present investigation, the cell proliferation rate, the regulation of cell cycle progression and the rate of ribosome biogenesis (this latter taken to estimate cell growth) have been studied using morphometric markers or parameters evaluated by light and electron microscopy in real microgravity on the International Space Station (ISS) and in ground-based simulated microgravity, using the Random Positioning Machine and the Magnetic Levitation Instrument. Results showed enhanced cell proliferation but depleted cell growth in both real and simulated mierogravity, indicating that the two processes are uncoupled, unlike the situation under normal gravity on Earth in which they are strictly co-ordinated events. It is concluded that microgravity is an important stress condition for plant cells compared to normal ground gravity conditions.
机译:据报道,拟南芥中微重力作用下基因表达模式的变化。植物细胞的生长和增殖是可能受基因表达的这种变化影响的功能。在本研究中,已经使用形态学标记或通过光和电子显微镜在真实的微重力下评估的参数研究了细胞增殖率,细胞周期进程的调节和核糖体生物发生率(后者用于估计细胞生长)。国际空间站(ISS)并使用随机定位机和磁悬浮仪在地面模拟微重力。结果显示,在实际和模拟的微重力下,细胞增殖均得到增强,但细胞生长却被消耗,这表明这两个过程是不相关的,这与地球上正常重力下严格协调的事件不同。结论是,与正常地面重力条件相比,微重力是植物细胞重要的胁迫​​条件。

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