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恢复该表型。

Bring back the phenotype.

作者信息

Marín César, Wade Michael J

机构信息

Centro de Investigación e Innovación para el Cambio Climático (CiiCC), Universidad Santo Tomás, Ave Ramón Picarte 1130, 5090000, Valdivia, Chile.

Vrije Universiteit Amsterdam, Amsterdam Institute for Life and Environment, de Boelelaan 1085, Amsterdam, 1081 HV, the Netherlands.

出版信息

New Phytol. 2025 Jun;246(6):2440-2445. doi: 10.1111/nph.70138. Epub 2025 Apr 17.

Abstract

When thinking about evolutionary change, many practicing biologists will focus on changes in allele frequencies over time. This gene-centric view of evolution has strongly impacted how evolution (and biological science in general) is thought of, taught, and funded. In this viewpoint, we join recent criticisms of the gene-centric view and call for reinstalling a phenotypic view of evolution. The assumptions of the gene-centric view-enormous/nonstructured populations and totally random interactions between genes, individuals, and environments-are hard to imagine in the real world. A gene's effects on phenotype and fitness depend on its interactions with other genes (epistasis), other individuals, the microbiome, and the environment, and it changes between generations, populations, and environments. Incorrectly, genes have been given an agency and role in natural selection that they do not possess: they replicate, but they do not have phenotypic variation or differential proliferation through their traits (these are characteristics of the units of selection deemed 'interactors'). Here, we show how a phenotypic view of evolution is necessary to capture several widespread phenomena: epistasis, nongenetic inheritance, multilevel selection, and niche construction through plant-soil feedbacks, all of which have vast empirical evidence. Life is marvelous, complex, and certainly more than machinery and genetic information.

摘要

在思考进化变化时,许多从事生物学研究的人员会关注等位基因频率随时间的变化。这种以基因为中心的进化观点对人们思考、教授和资助进化(以及一般意义上的生物科学)产生了重大影响。在本文观点中,我们认同最近对以基因为中心观点的批评,并呼吁重新树立进化的表型观。以基因为中心观点的假设——庞大/无结构的种群以及基因、个体和环境之间完全随机的相互作用——在现实世界中很难想象。一个基因对表型和适应性的影响取决于它与其他基因(上位性)、其他个体、微生物群和环境的相互作用,并且在代际、种群和环境之间会发生变化。错误的是,基因在自然选择中被赋予了它们并不具备的作用和角色:它们会复制,但它们不会通过其性状产生表型变异或差异增殖(这些是被视为“相互作用者”的选择单位的特征)。在这里,我们展示了进化的表型观对于理解几种普遍现象是如何必要的:上位性、非遗传继承、多级选择以及通过植物 - 土壤反馈进行的生态位构建,所有这些都有大量的实证证据。生命是奇妙、复杂的,当然不仅仅是机械装置和遗传信息。

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