Janković Srdja, Ćirković Milan M
University Children's Hospital, Tiršova 10, 11000, Belgrade, Serbia.
Astronomical Observatory of Belgrade, Volgina 7, 11000, Belgrade, Serbia.
Orig Life Evol Biosph. 2016 Mar;46(1):67-79. doi: 10.1007/s11084-015-9464-z. Epub 2015 Sep 29.
Physical processes that characterize living matter are qualitatively distinct in that they involve encoding and transfer of specific types of information. Such information plays an active part in the control of events that are ultimately linked to the capacity of the system to persist and multiply. This algorithmicity of life is a key prerequisite for its Darwinian evolution, driven by natural selection acting upon stochastically arising variations of the encoded information. The concept of evolvability attempts to define the total capacity of a system to evolve new encoded traits under appropriate conditions, i.e., the accessible section of total morphological space. Since this is dependent on previously evolved regulatory networks that govern information flow in the system, evolvability itself may be regarded as an evolved ability. The way information is physically written, read and modified in living cells (the "coding concept") has not changed substantially during the whole history of the Earth's biosphere. This biosphere, be it alone or one of many, is, accordingly, itself a product of natural selection, since the overall evolvability conferred by its coding concept (nucleic acids as information carriers with the "rulebook of meanings" provided by codons, as well as all the subsystems that regulate various conditional information-reading modes) certainly played a key role in enabling this biosphere to survive up to the present, through alterations of planetary conditions, including at least five catastrophic events linked to major mass extinctions. We submit that, whatever the actual prebiotic physical and chemical processes may have been on our home planet, or may, in principle, occur at some time and place in the Universe, a particular coding concept, with its respective potential to give rise to a biosphere, or class of biospheres, of a certain evolvability, may itself be regarded as a unit (indeed the arch-unit) of natural selection.
表征生命物质的物理过程在性质上是不同的,因为它们涉及特定类型信息的编码和传递。此类信息在控制最终与系统生存和繁殖能力相关的事件中发挥着积极作用。生命的这种算法特性是其达尔文式进化的关键前提,这种进化由自然选择驱动,作用于编码信息的随机产生的变异。可进化性的概念试图定义一个系统在适当条件下进化出新的编码特征的总能力,即总形态空间的可及部分。由于这取决于先前进化出的控制系统中信息流的调节网络,可进化性本身可被视为一种进化而来的能力。在地球生物圈的整个历史中,信息在活细胞中进行物理书写、读取和修改的方式(“编码概念”)并没有实质性改变。因此,这个生物圈,无论它是独一无二的还是众多生物圈之一,本身就是自然选择的产物,因为其编码概念(核酸作为信息载体,密码子提供“意义规则手册”,以及所有调节各种条件性信息读取模式的子系统)所赋予的整体可进化性,在使这个生物圈通过包括至少五次与大规模物种灭绝相关的灾难性事件在内的行星条件变化而存活至今的过程中,肯定起到了关键作用。我们认为,无论在我们的母星上实际发生的益生元前的物理和化学过程是什么,或者原则上在宇宙中的某个时间和地点可能发生什么,一种特定的编码概念,及其各自产生具有一定可进化性的生物圈或一类生物圈的潜力,本身可被视为自然选择的一个单元(实际上是首要单元)。