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Deciphering the evolutionary interplay between subgenomes following polyploidy: A paleogenomics approach in grasses

机译:解读多倍体后亚基因组之间的进化相互作用:草中的古基因组学方法

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摘要

How did plant species emerge from their most recent common ancestors (MRCAs) 250 million years ago? Modern plant genomes help to address such key questions in unveiling precise species genealogies. The field of paleogenomics is undergoing a paradigm shift for investigating species evolution from the study of ancestral genomes from extinct species to deciphering the evolutionary forces (in terms of duplication, fusion, fi ssion, deletion, and translocation) that drove present-day plant diversity (in terms of chromosome/gene number and genome size). In this review, inferred ancestral karyotype genomes are shown to be powerful tools to (1) unravel the past history of extant species by recovering the variations of ancestral genomic compartments and (2) accelerate translational research by facilitating the transfer of genomic information from model systems to species of agronomic interest.
机译:2.5亿年前,植物物种是如何从其最近的祖先(MRCA)中出现的?现代植物基因组有助于揭示精确的物种谱系中的此类关键问题。从研究灭绝物种的祖先基因组到破译驱动当今植物多样性的进化力(就复制,融合,分裂,缺失和易位而言),古基因组学领域正在经历着范式转变,以研究物种进化。 (根据染色体/基因数量和基因组大小)。在这篇综述中,推断出的祖先核型基因组是强大的工具,其(1)通过恢复祖先基因组区室的变异来揭示现存物种的过去历史,以及(2)通过促进从模型系统转移基因组信息来加快翻译研究对农艺感兴趣的物种。

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