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Genomics in the light of evolutionary transitions

机译:进化过渡的基因组学

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Molecular biology has entrenched the gene as the basic hereditary unit and genomes are often considered little more than collections of genes. However, new concepts and genomic data have emerged, which suggest that the genome has a unique place in the hierarchy of life. Despite this, a framework for the genome as a major evolutionary transition has not been fully developed. Instead, genome origin and evolution are frequently considered as a series of neutral or nonadaptive events. In this article, we argue for a Darwinian multilevel selection interpretation for the origin of the genome. We base our arguments on the multilevel selection theory of hypercycles of cooperative interacting genes and predictions that gene-level trade-offs in viability and reproduction can help drive evolutionary transitions. We consider genomic data involving mobile genetic elements as a test case of our view. A new concept of the genome as a discrete evolutionary unit emerges and the gene-genome juncture is positioned as a major evolutionary transition in individuality. This framework offers a fresh perspective on the origin of macromolecular life and sets the scene for a new, emerging line of inquiry-the evolutionary ecology of the genome.
机译:分子生物学已经将基因确定为基本的遗传单位,而基因组通常只不过是基因的集合而已。但是,出现了新的概念和基因组数据,这表明基因组在生命层次中具有独特的地位。尽管如此,尚未完全开发出作为主要进化过渡的基因组框架。相反,基因组起源和进化通常被认为是一系列中性或非适应性事件。在本文中,我们主张对基因组的起源进行达尔文的多级选择解释。我们的论据基于协同相互作用基因的超循环的多级选择理论,以及关于生存力和繁殖的基因级权衡可以帮助推动进化过渡的预测。我们认为涉及移动遗传元件的基因组数据是我们观点的测试案例。基因组作为离散的进化单位的新概念应运而生,基因-基因组的交汇点被定位为个体的主要进化过渡。该框架为高分子生命的起源提供了新的视角,并为新的新兴研究领域(基因组的进化生态学)奠定了基础。

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