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首页> 外文期刊>Progress in Biophysics and Molecular Biology: An International Review Journal >The biological default state of cell proliferation with variation and motility, a fundamental principle for a theory of organisms
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The biological default state of cell proliferation with variation and motility, a fundamental principle for a theory of organisms

机译:具有变化和运动性的细胞增殖的生物学默认状态,这是有机体理论的基本原理

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The principle of inertia is central to the modern scientific revolution. By postulating this principle Galileo at once identified a pertinent physical observable (momentum) and a conservation law (momentum conservation). He then could scientifically analyze what modifies inertial movement: gravitation and friction. Inertia, the default state in mechanics, represented a major theoretical commitment: there is no need to explain uniform rectilinear motion, rather, there is a need to explain departures from it. By analogy, we propose a biological default state of proliferation with variation and motility. From this theoretical commitment, what requires explanation is proliferative quiescence, lack of variation, lack of movement. That proliferation is the default state is axiomatic for biologists studying unicellular organisms. Moreover, it is implied in Darwin's "descent with modification". Although a "default state" is a theoretical construct and a limit case that does not need to be instantiated, conditions that closely resemble unrestrained cell proliferation are readily obtained experimentally. We will illustrate theoretical and experimental consequences of applying and of ignoring this principle. (C) 2016 Elsevier Ltd. All rights reserved.
机译:惯性原理是现代科学革命的核心。通过假设这一原理,伽利略立即确定了相关的物理可观察到的(动量)和守恒定律(动量守恒)。然后,他可以科学地分析是什么改变了惯性运动:重力和摩擦力。惯性是力学中的默认状态,代表了一项主要的理论承诺:无需解释均匀的直线运动,而是需要解释其偏离之处。通过类推,我们提出具有变化和运动性的生物学默认增殖状态。从这个理论上的承诺,需要解释的是增殖静止,缺乏变异,缺乏运动。对于研究单细胞生物的生物学家来说,增殖是默认状态是不言而喻的。而且,这在达尔文的“修改后的血统”中有暗示。尽管“默认状态”是一种理论构造,并且不需要实例化一个极限情况,但通过实验很容易获得与不受约束的细胞增殖极为相似的条件。我们将说明应用和忽略此原理的理论和实验后果。 (C)2016 Elsevier Ltd.保留所有权利。

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