Department of Ecology and Evolutionary Biology, University of Michigan, Ann Arbor, MI 48109, USA.
Genomics Proteomics Bioinformatics. 2023 Feb;21(1):1-12. doi: 10.1016/j.gpb.2023.01.005. Epub 2023 Jan 28.
Genomics, an interdisciplinary field of biology on the structure, function, and evolution of genomes, has revolutionized many subdisciplines of life sciences, including my field of evolutionary biology, by supplying huge data, bringing high-throughput technologies, and offering a new approach to biology. In this review, I describe what I have learned from genomics and highlight the fundamental knowledge and mechanistic insights gained. I focus on three broad topics that are central to evolutionary biology and beyond-variation, interaction, and selection-and use primarily my own research and study subjects as examples. In the next decade or two, I expect that the most important contributions of genomics to evolutionary biology will be to provide genome sequences of nearly all known species on Earth, facilitate high-throughput phenotyping of natural variants and systematically constructed mutants for mapping genotype-phenotype-fitness landscapes, and assist the determination of causality in evolutionary processes using experimental evolution.
基因组学是生物学的一个跨学科领域,研究基因组的结构、功能和进化,通过提供大量数据、高通量技术以及提供生物学的新方法,彻底改变了生命科学的许多分支学科,包括我的进化生物学领域。在这篇综述中,我描述了我从基因组学到的东西,并强调了所获得的基本知识和机制见解。我专注于三个广泛的主题,这些主题是进化生物学的核心,甚至超越了进化生物学——变异、相互作用和选择——并主要以我自己的研究和学习对象为例。在未来的十年左右,我预计基因组学对进化生物学最重要的贡献将是提供地球上几乎所有已知物种的基因组序列,促进对自然变异和系统构建的突变体进行高通量表型分析,以绘制基因型-表型-适应性景观,并使用实验进化来帮助确定进化过程中的因果关系。