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形态新奇性的扩散进化动力学。

The diffused evolutionary dynamics of morphological novelty.

作者信息

Quintero Ignacio

机构信息

Institut de Biologie de l'ENS, Département de biologie, École normale supérieure, CNRS, INSERM, Université Paris Science and Lettres, Paris 75005, France.

出版信息

Proc Natl Acad Sci U S A. 2025 May 6;122(18):e2425573122. doi: 10.1073/pnas.2425573122. Epub 2025 May 1.

Abstract

Rates of evolution are fundamental to understand the processes that shaped the history of life. The predominant view holds that high rates of phenotypic evolution result from lineage transitions across peaks in an adaptive landscape, with subsequent slow-downs, but evidence remains debated. I developed a phylogenetic "diffused Brownian motion" model that characterizes nuanced variations in evolutionary rates and use it to comprehensively assess body size evolution and its underlying rates for 2,950 extinct and 792 extant species that span over 450 Mys of evolution. I find that evolutionary rates do not conform to expectations from adaptive landscape theory, but rather have been stable, unaffected by the accumulation of phenotypic disparity. Long-term evolutionary trends, such as several net increases in clade-average body size, result both from sustained evolution at the lineage level and the sorting of species phenotypes and their underlying evolutionary rates at the clade level, sometimes acting in opposite directions. These findings substantiate an active role of species in shaping their environment that generate continuous novelty of life forms.

摘要

进化速率是理解塑造生命历史过程的基础。主流观点认为,表型进化的高速率源于适应性景观中跨越峰值的谱系转变,随后会减缓,但相关证据仍存在争议。我开发了一种系统发育“扩散布朗运动”模型,该模型能够描述进化速率的细微变化,并使用它来全面评估跨越4.5亿年进化历程的2950种已灭绝和792种现存物种的体型进化及其潜在速率。我发现进化速率并不符合适应性景观理论的预期,而是一直保持稳定,不受表型差异积累的影响。长期进化趋势,例如几个分支平均体型的净增加,既源于谱系水平上的持续进化,也源于分支水平上物种表型及其潜在进化速率的筛选,有时这两种作用方向相反。这些发现证实了物种在塑造其环境方面的积极作用,这种作用产生了生命形式的持续新奇性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b78/12067242/0ec64b77d245/pnas.2425573122fig01.jpg

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