Wen Tao, Cheong Kang Hao
Division of Mathematical Sciences, School of Physical and Mathematical Sciences, Nanyang Technological University, 21 Nanyang Link, S637371, Singapore.
Division of Mathematical Sciences, School of Physical and Mathematical Sciences, Nanyang Technological University, 21 Nanyang Link, S637371, Singapore; College of Computing and Data Science (CCDS), Nanyang Technological University, 50 Nanyang Avenue, S639798, Singapore.
Phys Life Rev. 2024 Dec;51:33-59. doi: 10.1016/j.plrev.2024.08.002. Epub 2024 Aug 6.
Parrondo's paradox refers to the paradoxical phenomenon of combining two losing strategies in a certain manner to obtain a winning outcome. It has been applied to uncover unexpected outcomes across various disciplines, particularly at different spatiotemporal scales within ecosystems. In this article, we provide a comprehensive review of recent developments in Parrondo's paradox within the interdisciplinary realm of the physics of life, focusing on its significant applications across biology and the broader life sciences. Specifically, we examine its relevance from genetic pathways and phenotypic regulation, to intercellular interaction within multicellular organisms, and finally to the competition between populations and species in ecosystems. This phenomenon, spanning multiple biological domains and scales, enhances our understanding of the unified characteristics of life and reveals that adaptability in a drastically changing environment, rather than the inherent excellence of a trait, underpins survival in the process of evolution. We conclude by summarizing our findings and discussing future research directions that hold promise for advancing the field.
帕隆多悖论指的是通过某种方式将两种失败策略组合起来以获得胜利结果的矛盾现象。它已被应用于揭示各个学科中意想不到的结果,特别是在生态系统内不同的时空尺度上。在本文中,我们全面回顾了生命物理学跨学科领域中帕隆多悖论的最新进展,重点关注其在生物学和更广泛的生命科学中的重要应用。具体而言,我们研究了它从基因途径和表型调控,到多细胞生物体内细胞间相互作用,再到生态系统中种群和物种间竞争的相关性。这种跨越多个生物领域和尺度的现象,加深了我们对生命统一特征的理解,并揭示出在急剧变化的环境中的适应性而非某一特性的固有优越性,是进化过程中生存的基础。我们通过总结研究结果并讨论有望推动该领域发展的未来研究方向来结束本文。