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Simulated microgravity Mars gravity and 2g hypergravity affect cell cycle regulation ribosome biogenesis and epigenetics in Arabidopsis cell cultures

机译:模拟的微重力火星重力和2g超重力影响拟南芥细胞培养中的细胞周期调控核糖体生物发生和表观遗传学

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摘要

Gravity is the only component of Earth environment that remained constant throughout the entire process of biological evolution. However, it is still unclear how gravity affects plant growth and development. In this study, an in vitro cell culture of Arabidopsis thaliana was exposed to different altered gravity conditions, namely simulated reduced gravity (simulated microgravity, simulated Mars gravity) and hypergravity (2g), to study changes in cell proliferation, cell growth, and epigenetics. The effects after 3, 14, and 24-hours of exposure were evaluated. The most relevant alterations were found in the 24-hour treatment, being more significant for simulated reduced gravity than hypergravity. Cell proliferation and growth were uncoupled under simulated reduced gravity, similarly, as found in meristematic cells from seedlings grown in real or simulated microgravity. The distribution of cell cycle phases was changed, as well as the levels and gene transcription of the tested cell cycle regulators. Ribosome biogenesis was decreased, according to levels and gene transcription of nucleolar proteins and the number of inactive nucleoli. Furthermore, we found alterations in the epigenetic modifications of chromatin. These results show that altered gravity effects include a serious disturbance of cell proliferation and growth, which are cellular functions essential for normal plant development.
机译:重力是地球环境在整个生物进化过程中保持不变的唯一组成部分。但是,仍然不清楚重力如何影响植物的生长发育。在这项研究中,拟南芥的体外细胞培养物暴露于不同的重力条件下,即模拟的重力降低(模拟的微重力,模拟的火星重力)和超重力(2g),以研究细胞增殖,细胞生长和表观遗传学的变化。评价了暴露3、14和24小时后的效果。在24小时的处理中发现了最相关的变化,对于模拟的重力降低而言,比超重力更显着。类似地,在真实重力或模拟微重力下生长的幼苗的分生细胞中,细胞的增殖和生长在模拟的重力降低下解耦。细胞周期阶段的分布以及受试细胞周期调节因子的水平和基因转录都发生了变化。根据核仁蛋白的水平和基因转录以及无活性核仁的数量,核糖体的生物发生减少。此外,我们发现了染色质的表观遗传修饰的改变。这些结果表明,改变的重力效应包括对细胞增殖和生长的严重干扰,这是正常植物发育必不可少的细胞功能。

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