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Expansion and Functional Divergence of the SHORT VEGETATIVE PHASE (SVP) Genes in Eudicots

机译:双子叶植物中植物生长期短基因(SVP)基因的扩增和功能差异

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摘要

SHORT VEGETATIVE PHASE (SVP) genes are members of the well-known MADS-box gene family that regulates vital developmental processes in plants. In Arabidopsis, there are two SVP paralogs, SVP/AGAMOUS-LIKE22 (SVP/AGL22) and AGL24. SVP protein suppresses the flowering process, whereas AGL24 acts as a flowering activator. Phylogenetic analysis of SVP genes representing most of the sequenced eudicot species showed that the SVP gene family could be divided into three major clades in eudicots (SVP1, SVP2, and SVP3), most likely resulting from an ancient whole-genome triplication in core eudicots. Among them, the SVP1 (SVP) and SVP2 (AGL24) clades are retained in nearly all species, whereas the SVP3 clade has been lost in Brassicaceae, Myrtaceae, and some species in other families. Reflecting lineage-specific tandem duplication and whole-genome duplication, SVP gene copy numbers ranged from 3 to 11 in the analyzed species. Sequence analysis showed that SVP3 proteins have obvious differences with SVP1 and SVP2 in the C-terminal (C) domain and intervening (I) domain. Positive selection analysis also showed that the ω (dN/dS) value was highest in the SVP3 clade, with 17 positive selection sites detected in the SVP3 clade. Promoter analysis for cis-regulatory elements showed that some genes in the SVP2 and SVP3 clades may be regulated by abscisic acid, ethylene, and gibberellin. RNA-seq data from grape, poplar, and apple revealed that genes in SVP3 group are highly expressed in vegetative organs such as buds, leaves, cotyledons, and dormant buds in particular, indicating the involvement of genes belong to SVP3 group in the dormancy process. Overall, the findings underscore the functional diversity of the SVP genes in eudicots.
机译:植物生长素(SVP)基因是众所周知的MADS-box基因家族的成员,该家族调节植物的重要发育过程。在拟南芥中,有两个SVP旁系同源物,SVP / AGAMOUS-LIKE22(SVP / AGL22)和AGL24。 SVP蛋白抑制开花过程,而AGL24充当开花激活剂。对代表大多数已测序双子叶植物物种的SVP基因的系统进化分析表明,SVP基因家族可分为双子叶植物主要的三个进化枝(SVP1,SVP2和SVP3),最有可能是由于核心双子叶植物的古代全基因组三倍复制所致。其中,SVP1(SVP)和SVP2(AGL24)进化枝几乎保留在所有物种中,而SVP3进化枝已在十字花科,桃金娘科和其他家族的某些物种中丢失。反映谱系特有的串联重复和全基因组重复,在分析物种中,SVP基因拷贝数范围为3至11。序列分析表明,SVP3蛋白在C端(C)域和中间(I)域中与SVP1和SVP2有明显差异。阳性选择分析还显示,ω(dN / dS)值在SVP3进化枝中最高,在SVP3进化枝中检测到17个阳性选择位点。对顺式调控元件的启动子分析表明,SVP2和SVP3进化枝中的某些基因可能受脱落酸,乙烯和赤霉素的调控。来自葡萄,杨树和苹果的RNA-seq数据显示,SVP3组中的基因在营养器官中特别是在芽,叶,子叶和休眠芽等植物中高表达,这表明该基因参与了休眠过程。总的来说,这些发现强调了双子叶植物中SVP基因的功能多样性。

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