Department of Physics and Astronomy, Rice University, USA.
Phys Life Rev. 2011 Jun;8(2):129-60. doi: 10.1016/j.plrev.2011.02.003. Epub 2011 Feb 25.
In this review, we discuss modularity and hierarchy in biological systems. We review examples from protein structure, genetics, and biological networks of modular partitioning of the geometry of biological space. We review theories to explain modular organization of biology, with a focus on explaining how biology may spontaneously organize to a structured form. That is, we seek to explain how biology nucleated from among the many possibilities in chemistry. The emergence of modular organization of biological structure will be described as a symmetry-breaking phase transition, with modularity as the order parameter. Experimental support for this description will be reviewed. Examples will be presented from pathogen structure, metabolic networks, gene networks, and protein-protein interaction networks. Additional examples will be presented from ecological food networks, developmental pathways, physiology, and social networks.
在这篇综述中,我们讨论了生物系统中的模块性和层次性。我们回顾了蛋白质结构、遗传学和生物网络中生物空间几何模块化划分的例子。我们回顾了一些解释生物学模块化组织的理论,重点是解释生物学如何自发地组织成有结构的形式。也就是说,我们试图解释生物学是如何从化学的众多可能性中产生的。生物结构模块化组织的出现将被描述为一个对称破缺的相变,其中模块性是序参量。我们将回顾对这一描述的实验支持。将从病原体结构、代谢网络、基因网络和蛋白质-蛋白质相互作用网络中举例说明。还将从生态食物网络、发育途径、生理学和社交网络中举例说明。