Aon M A, Cortassa S
Instituto Superior de Investigaciones Biológicas (INSIBIO-CONICET), Departamento Bioquímica de la Nutrición, Universidad Nacional de Tucumán, Argentina.
Mol Cell Biochem. 1993 Mar 10;120(1):1-13. doi: 10.1007/BF00925979.
Different levels of organization distinguished by characteristics spatial dimensions, Ec, and relaxation times, Tr, of biological processes ranging from electron transport in energy transduction to growth of microbial and plant cells, are shown to be related through a relation that may be interpreted as allometric and characterized by two different slopes. Processes, at levels of organization occurring in spatial dimensions of micrometers and relaxing in the order of minutes, delimit a 'transition point' between the two curves, that we interpret as a limit for the emergence of macroscopic coherence. The characteristic spatial dimension, Ec, and the relaxation time, Tr, contain dynamical information about the processes occurring at a given level of organization. When a steady state of a biological process at a certain level of organization becomes unstable, the system undergoes a transition to another level of organization. To exemplify the appearance of macroscopic order at levels of organization further from the 'transition point' we present in this report various experimental systems involving many levels of organization allometrically related that exhibit different kinds of self-organized behavior, i.e. bi-stability, oscillations, changes in (a)symmetry.
从能量转导中的电子传输到微生物和植物细胞生长等生物过程,其不同组织层次由特征空间维度(Ec)和弛豫时间(Tr)区分,这些组织层次通过一种可解释为异速生长且具有两种不同斜率的关系相互关联。在微米空间维度上发生且以分钟量级弛豫的组织层次中的过程,在两条曲线之间划定了一个“转变点”,我们将其解释为宏观相干性出现的极限。特征空间维度(Ec)和弛豫时间(Tr)包含了关于在给定组织层次上发生的过程的动力学信息。当生物过程在某一组织层次的稳态变得不稳定时,系统会转变到另一组织层次。为了举例说明在远离“转变点”的组织层次上宏观秩序的出现,我们在本报告中展示了各种涉及多个异速生长相关组织层次的实验系统,这些系统表现出不同类型的自组织行为,即双稳态、振荡、(非)对称性变化。