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通过作物进化实验观察自然选择。

Observe natural selection by evolutionary experiments in crops.

作者信息

Wu Tian, Cheng Shifeng

机构信息

Agricultural Genomics Institute at Shenzhen, Chinese Academy of Agricultural Sciences, Shenzhen, 518124 China.

出版信息

aBIOTECH. 2025 May 20;6(2):381-387. doi: 10.1007/s42994-025-00215-6. eCollection 2025 Jun.

Abstract

Evolutionary experiments provide a unique lens through which to observe the impacts of natural selection on crop evolution, domestication, and adaptation through empirical evidence. Enabled by modern technologies-such as the development of large-scale, structured evolving populations, high-throughput phenotyping, and genomics-driven genetics studies-the transition from theoretical evolutionary biology to practical application is now possible for staple crops. The century-long Barley Composite Cross II (CCII) competition experiment has offered invaluable insights into understanding the genomic and phenotypic basis of natural and artificial selection driven by environmental adaptation during crop evolution and domestication. These experiments enable scientists to measure evolutionary dynamics, in real time, of genetic diversity, adaptation of fitness-associated traits, and the trade-offs inherent in selective processes. Beyond advancing our understanding of evolutionary biology and agricultural practices, these studies provide critical insights into addressing global challenges, from ensuring food security to fostering resilience in human societies.

摘要

进化实验提供了一个独特的视角,通过实证证据来观察自然选择对作物进化、驯化和适应的影响。借助现代技术,如大规模结构化进化群体的发展、高通量表型分析以及基因组学驱动的遗传学研究,主要作物从理论进化生物学向实际应用的转变现在成为可能。长达一个世纪的大麦复合杂交二代(CCII)竞争实验为理解作物进化和驯化过程中环境适应驱动的自然和人工选择的基因组和表型基础提供了宝贵的见解。这些实验使科学家能够实时测量遗传多样性的进化动态、与适应性相关性状的适应情况以及选择过程中固有的权衡。除了推进我们对进化生物学和农业实践的理解之外,这些研究还为应对全球挑战提供了关键见解,从确保粮食安全到增强人类社会的复原力。

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