Makarieva Anastassia M, Nefiodov Andrei V, Li Bai-Lian
Theoretical Physics Division, Petersburg Nuclear Physics Institute, Gatchina 188300, Russia.
USDA-China MOST Joint Research Center for AgroEcology and Sustainability, University of California, Riverside, CA 92521-0124, USA.
Entropy (Basel). 2020 Sep 13;22(9):1025. doi: 10.3390/e22091025.
As humanity struggles to find a path to resilience amidst global change vagaries, understanding organizing principles of living systems as the pillar for human existence is rapidly growing in importance. However, finding quantitative definitions for order, complexity, information and functionality of living systems remains a challenge. Here, we review and develop insights into this problem from the concept of the biotic regulation of the environment developed by Victor Gorshkov (1935-2019). Life's extraordinary persistence-despite being a strongly non-equilibrium process-requires a quantum-classical duality: the program of life is written in molecules and thus can be copied without information loss, while life's interaction with its non-equilibrium environment is performed by macroscopic classical objects (living individuals) that age. Life's key energetic parameter, the volume-specific rate of energy consumption, is maintained within universal limits by most life forms. Contrary to previous suggestions, it cannot serve as a proxy for "evolutionary progress". In contrast, ecosystem-level surface-specific energy consumption declines with growing animal body size in stable ecosystems. High consumption by big animals is associated with instability. We suggest that the evolutionary increase in body size may represent a spontaneous loss of information about environmental regulation, a manifestation of life's algorithm ageing as a whole.
在人类努力在全球变化的变幻莫测中找到恢复力之路时,将生命系统的组织原则理解为人类生存的支柱正变得越来越重要。然而,为生命系统的秩序、复杂性、信息和功能找到定量定义仍然是一项挑战。在此,我们从维克托·戈尔什科夫(1935 - 2019)提出的环境生物调节概念出发,回顾并深入探讨这个问题。尽管生命是一个强烈的非平衡过程,但其非凡的持久性需要一种量子 - 经典二元性:生命的程序写在分子中,因此可以无信息损失地复制,而生命与其非平衡环境的相互作用是由会衰老的宏观经典物体(生物个体)进行的。大多数生命形式将生命的关键能量参数,即单位体积的能量消耗率,维持在普遍的限度内。与之前的观点相反,它不能作为“进化进步”的指标。相比之下,在稳定的生态系统中,生态系统层面的单位表面积能量消耗随着动物体型的增大而下降。大型动物的高能量消耗与不稳定性相关。我们认为,体型在进化过程中的增加可能代表着关于环境调节信息的自发丧失,是生命作为一个整体的算法老化的一种表现。