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分子操作时代的实验进化

Experimental evolution in an era of molecular manipulation.

作者信息

Ascensao Joao A, Desai Michael M

机构信息

Department of Organismal and Evolutionary Biology, Harvard University, Cambridge, MA, USA.

出版信息

Nat Rev Genet. 2025 Jul 21. doi: 10.1038/s41576-025-00867-6.

Abstract

Laboratory evolution experiments in microbial and viral populations have provided great insight into the dynamics and predictability of evolution. The rise of high-throughput sequencing technologies over the past two decades has driven a massive expansion in the scale and power of these experiments. However, until recently our abilities to connect genetic with phenotypic changes and analyse the molecular basis of adaptation have remained limited. Rapid technical advances to measure and manipulate both genotypes and phenotypes are now providing opportunities to investigate the genetic basis of phenotypic evolution and the forces that drive evolutionary dynamics. Here we review how these methodological advances are being used to predict and manipulate the course of laboratory evolution, analyse eco-evolutionary interactions, and how they are beginning to bridge the gap between laboratory and natural evolution.

摘要

在微生物和病毒群体中进行的实验室进化实验,为深入了解进化的动态过程和可预测性提供了很大帮助。过去二十年来高通量测序技术的兴起,推动了这些实验在规模和能力上的大规模扩展。然而,直到最近,我们将基因变化与表型变化联系起来并分析适应分子基础的能力仍然有限。现在,用于测量和操纵基因型与表型的快速技术进步,正为研究表型进化的遗传基础以及驱动进化动态的力量提供机会。在此,我们综述这些方法学进展如何被用于预测和操纵实验室进化过程、分析生态进化相互作用,以及它们如何开始弥合实验室进化与自然进化之间的差距。

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