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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Polyploidy-associated genome modifications during land plant evolution
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Polyploidy-associated genome modifications during land plant evolution

机译:陆地植物进化过程中与多倍体相关的基因组修饰

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The occurrence of polyploidy in land plant evolution has led to an acceleration of genome modifications relative to other crown eukaryotes and is correlated with key innovations in plant evolution. Extensive genome resources provide for relating genomic changes to the origins of novel morphological and physiological features of plants. Ancestral gene contents for key nodes of the plant family tree are inferred. Pervasive polyploidy in angiosperms appears likely to be the major factor generating novel angiosperm genes and expanding some gene families. However, most gene families lose most duplicated copies in a quasi-neutral process, and a few families are actively selected for single-copy status. One of the great challenges of evolutionary genomics is to link genome modifications to speciation, diversification and the morphological and/or physiological innovations that collectively compose biodiversity. Rapid accumulation of genomic data and its ongoing investigation may greatly improve the resolution at which evolutionary approaches can contribute to the identification of specific genes responsible for particular innovations. The resulting, more particulate' understanding of plant evolution, may elevate to a new level fundamental knowledge of botanical diversity, including economically important traits in the crop plants that sustain humanity.
机译:相对于其他冠状真核生物,陆地植物进化中多倍体的发生导致基因组修饰的加速,并且与植物进化中的关键创新有关。广泛的基因组资源提供了将基因组变化与植物新的形态和生理特征的起源相关联的资源。推断出植物家族树关键节点的祖先基因含量。被子植物中普遍存在的多倍体似乎是产生新的被子植物基因并扩展某些基因家族的主要因素。但是,大多数基因家族在准中性过程中丢失了大多数重复的拷贝,并且为单拷贝状态积极选择了几个家族。进化基因组学的巨大挑战之一是将基因组修饰与物种形成,多样化以及共同构成生物多样性的形态和/或生理创新联系起来。基因组数据的快速积累及其正在进行的研究可能会大大提高分辨率,在该分辨率下,进化方法可有助于鉴定负责特定创新的特定基因。由此产生的对植物进化的更多颗粒理解,可以将植物多样性的基础知识提高到一个新的水平,包括维持人类的农作物的重要经济性状。

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