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Evolutionary and Comparative Expression Analyses of TCP Transcription Factor Gene Family in Land Plants

机译:陆地植物TCP转录因子基因家族的进化及比较表达分析

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摘要

The plant-specific Teosinte-branched 1/Cycloidea/Proliferating (TCP) transcription factor genes are involved in plants’ development, hormonal pathways, and stress response but their evolutionary history is uncertain. The genome-wide analysis performed here for 47 plant species revealed 535 TCP candidates in terrestrial plants and none in aquatic plants, and that TCP family genes originated early in the history of land plants. Phylogenetic analysis divided the candidate genes into Classes I and II, and Class II was further divided into CYCLOIDEA (CYC) and CINCINNATA (CIN) clades; CYC is more recent and originated from CIN in angiosperms. Protein architecture, intron pattern, and sequence characteristics were conserved in each class or clade supporting this classification. The two classes significantly expanded through whole-genome duplication during evolution. Expression analysis revealed the conserved expression of TCP genes from lower to higher plants. The expression patterns of Class I and CIN genes in different stages of the same tissue revealed their function in plant development and their opposite effects in the same biological process. Interaction network analysis showed that TCP proteins tend to form protein complexes, and their interaction networks were conserved during evolution. These results contribute to further functional studies on TCP family genes.
机译:植物特有的Teosinte分支的1 / Cycloidea / Proliferating(TCP)转录因子基因与植物的发育,激素途径和胁迫反应有关,但其进化史尚不确定。在这里对47种植物进行的全基因组分析显示,陆生植物中有535个TCP候选物,水生植物中没有一个,而TCP家族基因起源于陆地植物的早期。系统发育分析将候选基因分为I类和II类,II类进一步分为CYCLOIDEA(CYC)和CINCINNATA(CIN)进化枝。 CYC较新,起源于被子植物中的CIN。在支持该分类的每个类别或进化枝中,蛋白质结构,内含子模式和序列特征均得到保留。通过进化过程中的全基因组复制,这两个类别显着扩展。表达分析揭示了从低等植物到高级植物的TCP基因的保守表达。 I类和CIN基因在同一组织不同阶段的表达模式揭示了它们在植物发育中的功能以及在同一生物学过程中的相反作用。相互作用网络分析表明,TCP蛋白质倾向于形成蛋白质复合物,并且它们的相互作用网络在进化过程中是保守的。这些结果有助于对TCP家族基因的进一步功能研究。

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