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Linking floral symmetry genes to breeding system evolution

机译:将花对称基因与育种系统进化联系起来

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Understanding the genetic basis of ecologically important traits is a major focus of evolutionary research. Recent advances in molecular genetic techniques should significantly increase our understanding of how regulatory genes function. By contrast, our understanding of the broader macro-evolutionary implications of developmental gene function lags behind. Here we review published data on the floral symmetry gene network (FSGN), and conduct phylogenetic analyses that provide evidence of a link between floral symmetry and breeding systems in angiosperms via dichogamy. Our results suggest that known genes in the FSGN and those yet to be described underlie this association. We posit that the integration of floral symmetry and the roles of other regulatory genes in plant breeding system evolution will provide new insights about macro-evolutionary patterns and processes in flowering plants.
机译:了解生态学重要特征的遗传基础是进化研究的主要重点。分子遗传技术的最新进展应大大增加我们对调控基因如何发挥作用的了解。相比之下,我们对发育基因功能的更广泛的宏观进化含义的理解落后。在这里,我们回顾了关于花对称基因网络(FSGN)的公开数据,并进行了系统发育分析,这些证据提供了花卉对称性和被子植物通过双歧配子育种系统之间联系的证据。我们的结果表明,FSGN中的已知基因和尚未描述的基因是这种关联的基础。我们认为,花对称性的整合以及其他调控基因在植物育种系统进化中的作用将为开花植物的宏观进化模式和过程提供新的见解。

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