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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Evolving Ideas on the Origin and Evolution of Flowers: New Perspectives in the Genomic Era
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Evolving Ideas on the Origin and Evolution of Flowers: New Perspectives in the Genomic Era

机译:关于花的起源和进化的进化观念:基因组时代的新观点

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The origin of the flower was a key innovation in the history of complex organisms, dramatically altering Earth’s biota. Advances in phylogenetics, developmental genetics, and genomics during the past 25 years have substantially advanced our understanding of the evolution of flowers, yet crucial aspects of floral evolution remain, such as the series of genetic and morphological changes that gave rise to the first flowers; the factors enabling the origin of the pentamerous eudicot flower, which characterizes ~70% of all extant angiosperm species; and the role of gene and genome duplications in facilitating floral innovations. A key early concept was the ABC model of floral organ specification, developed by Elliott Meyerowitz and Enrico Coen and based on two model systems, Arabidopsis thaliana and Antirrhinum majus . Yet it is now clear that these model systems are highly derived species, whose molecular genetic-developmental organization must be very different from that of ancestral, as well as early, angiosperms. In this article, we will discuss how new research approaches are illuminating the early events in floral evolution and the prospects for further progress. In particular, advancing the next generation of research in floral evolution will require the development of one or more functional model systems from among the basal angiosperms and basal eudicots. More broadly, we urge the development of “model clades” for genomic and evolutionary-developmental analyses, instead of the primary use of single “model organisms.” We predict that new evolutionary models will soon emerge as genetic/genomic models, providing unprecedented new insights into floral evolution.
机译:花的起源是复杂生物历史上的一项重要创新,极大地改变了地球的生物区系。在过去的25年中,系统遗传学,发育遗传学和基因组学方面的进展大大提高了我们对花卉进化的理解,但花卉进化的关键方面仍然存在,例如一系列遗传和形态变化产生了第一朵花。导致五子叶双子叶植物花起源的因素,其占所有现存被子植物种类的约70%;以及基因和基因组重复在促进花卉创新中的作用。早期的一个关键概念是花卉器官规范的ABC模型,该模型由Elliott Meyerowitz和Enrico Coen开发,并基于拟南芥和Antirrhinum majus这两个模型系统。但是现在很明显,这些模型系统是高度衍生的物种,其分子遗传发育组织必须与祖先以及早期被子植物的分子遗传发展组织有很大不同。在本文中,我们将讨论新的研究方法如何阐明花卉进化的早期事件以及进一步发展的前景。特别是,要推进下一代花卉进化研究,将需要从被子植物和双子叶植物中开发一个或多个功能模型系统。更广泛地说,我们敦促开发用于基因组和进化发展分析的“模型进化枝”,而不是主要使用单个“模型生物”。我们预测,新的进化模型将很快作为基因/基因组模型出现,从而为花卉进化提供前所未有的新见解。

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