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Dimensionless Numbers to Analyze Expansive Growth Processes

机译:无量纲数分析扩展过程

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摘要

Cells of algae, fungi, and plants have walls and exhibit expansive growth which can increase their volume by as much as 10,000 times. Expansive growth is central to their morphogenesis, development, and sensory responses to environmental stimuli. Equations describing the biophysical processes of the water uptake rate and the wall deformation rate have been derived, validated, and established. A significant amount of research provides insight into the molecular underpinnings of these processes. What is less well known are the relative magnitudes of these processes and how they compare during expansive growth and with walled cells from other species. Here, dimensionless numbers (Π parameters) are used to determine the magnitudes of the biophysical processes involved in the expansive growth rate of cells from algae (Chara corallina), fungi (Phycomyces blakesleeanus), and plants (Pisum satinis L.). It is found for all three species that the cell’s capability for the water uptake rate is larger than the wall plastic deformation rate and much larger than the wall elastic deformation rate. Also, the wall plastic deformation rates of all three species are of similar magnitude as their expansive growth rate even though the stress relaxation rates of their walls are very different. It is envisioned that dimensionless numbers can assist in determining how these biophysical processes change during development, morphogenesis, sensory responses, environmental stress, climate change, and after genetic modification.
机译:藻类,真菌和植物的细胞具有壁并显示出膨胀的生长,可以使它们的体积增加多达10,000倍。膨胀的生长对其形态,发育和对环境刺激的感觉反应至关重要。描述,验证和建立了描述吸水率和壁变形率的生物物理过程的方程式。大量研究提供了对这些过程的分子基础的认识。鲜为人知的是这些过程的相对强度,以及它们在膨胀生长期间与其他物种的壁细胞的比较。在这里,无量纲数(Π参数)用于确定与藻类(Chara Corallina),真菌(Phycomyces blakesleeanus)和植物(Pisum satinis L.)的细胞的快速生长速率有关的生物物理过程的大小。发现对于这三个物种,细胞的吸水率均大于壁的塑性变形率,并且远大于壁的弹性变形率。同样,尽管三个物种的壁的应力松弛速率相差很大,但它们的壁塑性变形速率与它们的膨胀增长率具有相似的大小。可以预见,无量纲数可以帮助确定这些生物物理过程在发育,形态发生,感官反应,环境压力,气候变化以及遗传修饰后如何变化。

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