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首页> 外文期刊>Biophysical Journal >A comparative mechanical analysis of plant and animal cells reveals convergence across kingdoms
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A comparative mechanical analysis of plant and animal cells reveals convergence across kingdoms

机译:对动植物细胞进行的比较力学分析揭示了各个王国之间的趋同

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摘要

Plant and animals have evolved different strategies for their development. Whether this is linked to major differences in their cell mechanics remains unclear, mainly because measurements on plant and animal cells relied on independent experiments and setups, thus hindering any direct comparison. In this study we used the same micro-rheometer to compare animal and plant single cell rheology. We found that wall-less plant cells exhibit the same weak power law rheology as animal cells, with comparable values of elastic and loss moduli. Remarkably, microtubules primarily contributed to the rheological behavior of wall-less plant cells whereas rheology of animal cells was mainly dependent on the actin network. Thus, plant and animal cells evolved different molecular strategies to reach a comparable cytoplasmic mechanical core, suggesting that evolutionary convergence could include the internal biophysical properties of cells.
机译:动植物已经发展出不同的发展策略。尚不清楚这是否与其细胞机制的主要差异有关,这主要是因为对动植物细胞的测量依赖于独立的实验和装置,因此妨碍了任何直接比较。在这项研究中,我们使用相同的微流变仪来比较动物和植物的单细胞流变学。我们发现无壁植物细胞表现出与动物细胞相同的弱幂律流变学,具有可比的弹性模量和损失模量。值得注意的是,微管主要促进无壁植物细胞的流变性,而动物细胞的流变性主要取决于肌动蛋白网络。因此,动植物细胞进化出不同的分子策略以达到可比的胞质机械核心,这表明进化趋同可能包括细胞的内部生物物理特性。

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