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Evolution of petal identity

机译:花瓣身份的演变

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摘要

Petals appear in many angiosperm taxa, yet when and how these attractive organs originated remains unclear. Phylogenetic reconstructions based on morphological data suggest that petals have evolved multiple times during the radiation of the angiosperms. Based on the diversity of petal morphologies, it is likely that the developmental programmes specifying petal identity are distinct in different lineages. On the other hand, molecular genetic analyses have suggested that the specification of petal identity in different lineages utilizes similar genetic pathways. Together, these observations indicate that the evolution of petals has relied on the repeated recruitment of a suite of interacting developmental control genes, albeit in different ways in different lineages. These observations suggest that this gene regulatory network represents a 'deep homology' in plant evolution. A major challenge is to understand how this ancestral developmental pathway has been redeployed in different angiosperm lineages, and how changes in the workings of this pathway have led to the myriad shapes, colours, and sizes of petals.
机译:花瓣出现在许多被子植物类群中,但是这些吸引器官的产生时间和方式尚不清楚。基于形态学数据的系统发育重建表明,在被子植物辐射期间,花瓣已经进化了多次。基于花瓣形态的多样性,指定花瓣同一性的发育程序可能在不同谱系中是不同的。另一方面,分子遗传学分析表明,不同谱系中花瓣身份的规范利用了相似的遗传途径。在一起,这些观察结果表明,花瓣的进化依赖于一系列相互作用的发育控制基因的重复募集,尽管在不同的世系中以不同的方式。这些观察结果表明,该基因调控网络代表了植物进化中的“深层同源性”。一个主要的挑战是要了解这种祖先发育途径如何在不同的被子植物谱系中进行重新部署,以及该途径的运作方式如何导致花瓣的形状,颜色和大小无数。

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