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论功能与选择在进化系统中的作用。

On the roles of function and selection in evolving systems.

作者信息

Wong Michael L, Cleland Carol E, Arend Daniel, Bartlett Stuart, Cleaves H James, Demarest Heather, Prabhu Anirudh, Lunine Jonathan I, Hazen Robert M

机构信息

Earth and Planets Laboratory, Carnegie Institution for Science, Washington, DC 20015.

Sagan Fellow, NASA Hubble Fellowship Program, Space Telescope Science Institute, Baltimore, MD 21218.

出版信息

Proc Natl Acad Sci U S A. 2023 Oct 24;120(43):e2310223120. doi: 10.1073/pnas.2310223120. Epub 2023 Oct 16.

Abstract

Physical laws-such as the laws of motion, gravity, electromagnetism, and thermodynamics-codify the general behavior of varied macroscopic natural systems across space and time. We propose that an additional, hitherto-unarticulated law is required to characterize familiar macroscopic phenomena of our complex, evolving universe. An important feature of the classical laws of physics is the conceptual equivalence of specific characteristics shared by an extensive, seemingly diverse body of natural phenomena. Identifying potential equivalencies among disparate phenomena-for example, falling apples and orbiting moons or hot objects and compressed springs-has been instrumental in advancing the scientific understanding of our world through the articulation of laws of nature. A pervasive wonder of the natural world is the evolution of varied systems, including stars, minerals, atmospheres, and life. These evolving systems appear to be conceptually equivalent in that they display three notable attributes: 1) They form from numerous components that have the potential to adopt combinatorially vast numbers of different configurations; 2) processes exist that generate numerous different configurations; and 3) configurations are preferentially selected based on function. We identify universal concepts of selection-static persistence, dynamic persistence, and novelty generation-that underpin function and drive systems to evolve through the exchange of information between the environment and the system. Accordingly, we propose a "law of increasing functional information": The functional information of a system will increase (i.e., the system will evolve) if many different configurations of the system undergo selection for one or more functions.

摘要

物理定律——如运动定律、引力定律、电磁定律和热力学定律——编纂了各种宏观自然系统在空间和时间上的一般行为。我们提出,需要一条额外的、迄今尚未阐明的定律来描述我们这个复杂且不断演化的宇宙中常见的宏观现象。经典物理定律的一个重要特征是,大量看似多样的自然现象所共有的特定特征在概念上具有等效性。识别不同现象之间的潜在等效性——例如,下落的苹果和绕轨道运行的卫星,或者热物体和压缩弹簧——通过阐明自然定律,有助于推进我们对世界的科学理解。自然界一个普遍存在的奇妙之处在于各种系统的演化,包括恒星、矿物质、大气和生命。这些不断演化的系统在概念上似乎是等效的,因为它们表现出三个显著特征:1)它们由众多具有潜在组合出大量不同构型的组件组成;2)存在产生众多不同构型的过程;3)构型根据功能被优先选择。我们确定了选择的通用概念——静态持久性、动态持久性和新奇性产生——这些概念支撑着功能,并通过环境与系统之间的信息交换驱动系统演化。因此,我们提出一条“功能信息增加定律”:如果系统的许多不同构型因一种或多种功能而接受选择,那么该系统的功能信息将会增加(即系统将会演化)。

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