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合成形式最为美妙:自组织的工程学见解

Synthetic Forms Most Beautiful: Engineering Insights into Self-Organization.

作者信息

Xu Zhejing, Chang Chih-Chia, Coyle Scott M

机构信息

Department of Biochemistry, University of Wisconsin-Madison, Wisconsin, United States.

Integrated Program in Biochemistry Graduate Program, University of Wisconsin-Madison, Wisconsin, United States.

出版信息

Physiology (Bethesda). 2025 Jul 1;40(4):0. doi: 10.1152/physiol.00064.2024. Epub 2025 Feb 12.

Abstract

Reflecting on the diversity of the natural world, Darwin famously observed that "from so simple a beginning endless forms most beautiful and most wonderful have been, and are being evolved." However, the examples that we are able to observe in nature are a consequence of chance, constrained by selection, drift, and epistasis. Here we explore how the efforts of synthetic biology to build new living systems can expand our understanding of the fundamental design principles that allow life to self-organize biological form, from cellular to organismal levels. We suggest that the ability to impose a length or timescale onto a biological activity is an essential strategy for self-organization in evolved systems and a key design target that is now being realized synthetically at all scales. By learning to integrate these strategies together, we are poised to expand on evolution's success and realize a space of synthetic forms not only beautiful but with diverse applications and transformative potential.

摘要

反思自然界的多样性,达尔文有句名言:“生命从如此简单的开端,进化出了无数最美丽、最奇妙的形式,而且仍在进化之中。”然而,我们在自然界中能够观察到的例子是偶然的结果,受到选择、漂变和上位性的限制。在这里,我们探讨合成生物学构建新生命系统的努力如何能够扩展我们对基本设计原则的理解,这些原则使生命能够在从细胞到生物体的各个层面上自我组织生物形态。我们认为,能够将长度或时间尺度施加于生物活动是进化系统中自我组织的一项基本策略,也是目前正在各个尺度上通过合成实现的关键设计目标。通过学习将这些策略整合在一起,我们有望在进化的成功基础上更进一步,实现一个不仅美丽而且具有多样应用和变革潜力的合成形式空间。

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