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Dynamic Expansion and Functional Evolutionary Profiles of Plant Conservative Gene Family SBP-Box in Twenty Two Flowering Plants and the Origin of miR156

机译:植物保守基因家族SBP-Box在22种开花植物中的动态扩增和功能进化谱及miR156的起源

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摘要

Conservative gene families in plants, which are closely related to innovations in flowering plants, have long and complex evolutionary histories. Here, we used the promoter-binding protein (SBP-box) gene family as an example to study conservative gene families in flowering plants. In total, 11 groups, including nine angiosperm-conservative groups and two monocot- and eudicot-specific groups, were identified. Among the nine angiosperm-conservative groups, four are conserved in all land plants and the remaining five are angiosperm-specific. The five angiosperm-specific groups exhibit structural and functional diversity and evolved together, along with the evolution of flowering plants. The expansion of genes was affected by miR156, and the miR156-regulated genes tend to retain more copies. Our results reflect the dynamic evolutionary process of the different groups, with the identification of two genetic lines via synteny analyses. In addition, miR156 showed a close evolutionary relationship with genes, suggesting that it may originate from face-to-face tandem duplication of genes. genes without an miR156 binding locus are usually functionally conservative or housekeeping like, belonging to the terrestrial-conservative group. In contrast, genes with miR156 binding sites are selected by angiosperms to regulate more complex physiological processes.
机译:与开花植物创新密切相关的植物保守基因家族,有着悠久而复杂的进化历史。在这里,我们以启动子结合蛋白(SBP-box)基因家族为例,研究开花植物中的保守基因家族。总共确定了11个组,包括9个被子植物保守组和2个单子叶植物和双子叶植物特异性组。在9个被子植物保守组中,所有陆地植物中有4个被保护,其余5个是被子植物特有的。五个被子植物特有的组显示出结构和功能的多样性,并且一起开花植物的进化。基因的扩增受miR156影响,而miR156调控的基因倾向于保留更多的拷贝。我们的结果反映了不同群体的动态进化过程,并通过同义分析确定了两个遗传系。此外,miR156与基因显示出密切的进化关系,这表明它可能源自基因的面对面串联复制。没有miR156结合位点的基因通常在功能上是保守的或管家般的,属于陆地保守组。相反,被子植物选择具有miR156结合位点的基因来调节更复杂的生理过程。

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