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Evolutionary divergence of motifs in B-class MADS-box proteins of seed plants

机译:种子植物B级疯子箱蛋白的图案进化分歧

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MADS-box transcription factors function as homo- or heterodimers and regulate many aspects of plant development; moreover, MADS-box genes have undergone extensive duplication and divergence. For example, the morphological diversity of floral organs is closely related to the functional divergence of the MADS-box gene family. B-class genes (such as Arabidopsis thaliana APETALA3 [AP3] and PISTILLATA [PI]) belong to a subgroup of MADS-box genes. Here, we collected 97 MADS-box B protein sequences from 21 seed plant species and examined their motifs to better understand the functional evolution of B proteins. We used the MEME tool to identify conserved sequence motifs in these B proteins; unique motif arrangements and sequences were identified in these B proteins. The keratin-like domains of Malus domestica and Populus trichocarpa B proteins differed from those in other angiosperms, suggesting that a novel regulatory network might have evolved in these species. The MADS domains of Nelumbo nucifera, Glycine max, and Amborella trichopoda B-proteins contained motif 9; in contrast, those of other plants contained motif 1. Protein modelling analyses revealed that MADS domains with motif 9 may lack amino acid sites required for DNA-binding. These results suggested that the three species might share an alternative mechanism controlling floral development. Amborella trichopoda has B proteins with either motif 1 or motif 9 MADS domains, suggesting that these two types of MADS domains evolved from the ancestral domain into two groups, those with motif 9 (N. nucifera and G. max), and those with motif 1. Moreover, our results suggest that the homodimer/heterodimer intermediate transition structure first appeared in A. trichopoda. Therefore, our systematic analysis of the motifs in B proteins sheds light on the evolution of these important transcription factors.
机译:疯狂箱转录因子函数作为同性恋或异二聚体,并调节植物开发的许多方面;此外,Mads-Box基因经历了广泛的重复和分歧。例如,花动器官的形态多样性与疯子箱基因家族的功能分歧密切相关。 B级基因(如拟南芥Apetala3 [AP3]和Pistillata [Pi])属于疯子箱基因的亚组。在这里,我们收集了来自21种种子植物物种的97个疯子箱B蛋白序列,并检查了它们的主题以更好地了解B蛋白的功能演变。我们使用MEME工具在这些B蛋白中识别保守的序列基序;在这些B蛋白中鉴定了独特的基序布置和序列。 Malus Domestica和Populus Trichocarpa B蛋白的角蛋白样域与其他有神分症的蛋白质不同,这表明一种新的调节网络可能已经进化在这些物种中。 Nelumbo Nucifera,Glycine Max和Amborella Trichopoda B-蛋白质的MADS域含有图案9;相反,其他植物的含有基序1.蛋白质建模分析显示,具有基序9的MADS结构域可能缺乏DNA结合所需的氨基酸位点。这些结果表明,这三种物种可能分享控制花卉发展的替代机制。 Amborella trichopoda具有与MOTIF 1或MOTIF 9 MADS域的蛋白质,表明这两种类型的疯子域从祖先域演变为两组,那些有图案9(Nucifera和G. Max)的那些,以及与主题的那些此外,我们的研究结果表明,同源二聚体/异二聚体中间转变结构首先出现在A. Trichopoda中。因此,我们对B蛋白质中的图案的系统分析揭示了这些重要转录因子的演变。

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