首页> 外文期刊>Plant physiology >Distinct Regulatory Changes Underlying Differential Expression of TEOSINTE BRANCHED1-CYCLOIDEA-PROLIFERATING CELL FACTOR Genes Associated with Petal Variations in Zygomorphic Flowers of Petrocosmea spp. of the Family Gesneriaceae
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Distinct Regulatory Changes Underlying Differential Expression of TEOSINTE BRANCHED1-CYCLOIDEA-PROLIFERATING CELL FACTOR Genes Associated with Petal Variations in Zygomorphic Flowers of Petrocosmea spp. of the Family Gesneriaceae

机译:与拟南芥属植物Zygomorphic花的花瓣变异相关的TEOSINTE BRANCHED1-CYCLOIDEA增生细胞因子基因的差异表达背后的不同调控变化。苦苣苔科

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CYCLOIDEA (CYC)-like genes, belonging to the plant-specific TCP transcription factor family that is named after TEOSINTE BRANCHED1 (TB1) from maize (Zea mays), CYC from Antirrhinum majus, and the PROLIFERATING CELL FACTORS (PCF) from rice (Oryza sativa), have conserved dorsal identity function in patterning floral zygomorphy mainly through specific expression in dorsal petals of a flower. Their expression changes are usually related to morphological diversity of zygomorphic flowers. However, it is still a challenge to elucidate the molecular mechanism underlying their expression differentiation. It is also unknown whether CINCINNATA (CIN)-like TCP genes, locally controlling cell growth and proliferation, are involved in the evolution of floral zygomorphy. To address these questions, we selected two closely related species, i.e. Petrocosmea glabristoma and Petrocosmea sinensis, with distinct petal morphology to conduct expression, hybridization, mutant, and allele-specific expression analyses. The results show that the size change of the dorsal petals between the two species is mainly mediated by the expression differentiation of CYC1C and CYC1D, while the shape variation of all petals is related to the expression change of CIN1. In reciprocal F1 hybrids, the expression of CYC1C, CYC1D, and CIN1 conforms to an additive inheritance mode, consistent with the petal phenotypes of hybrids. Through allele-specific expression analyses, we find that the expression differentiation of these TCP genes is underlain by distinctly different types of regulatory changes. We suggest that highly redundant paralogs with identical expression patterns and interspecific expression differentiation may be controlled by remarkably different regulatory pathways because natural selection may favor different regulatory modifications rather than coding sequence changes of key developmental genes in generating morphological diversity.
机译:CYCLOIDEA(CYC)样基因,属于植物特异性TCP转录因子家族,以玉米(Zea mays)的TEOSINTE BRANCHED1(TB1),Antirrhinum majus的CYC和水稻的PROLIFERATING细胞因子(PCF)命名水稻(Oryza sativa),主要通过在花的背瓣中的特异性表达,在图案化花的合子性方面具有保守的背侧身份功能。它们的表达变化通常与合子花的形态多样性有关。但是,阐明其表达差异的分子机制仍然是一个挑战。还不清楚是否局部控制细胞生长和增殖的类似CINCINNATA(CIN)的TCP基因是否参与了花合子的进化。为了解决这些问题,我们选择了两个密切相关的物种,即Petrocosmea glabristoma和Petrocosmea sinensis,它们具有独特的花瓣形态来进行表达,杂交,突变和等位基因特异性表达分析。结果表明,两个物种之间的背瓣大小变化主要是由CYC1C和CYC1D的表达差异介导的,而所有花瓣的形状变化都与CIN1的表达变化有关。在倒数F1杂种中,CYC1C,CYC1D和CIN1的表达符合加性遗传模式,与杂种的花瓣表型一致。通过等位基因特异性表达分析,我们发现这些TCP基因的表达差异是由明显不同类型的调节变化所决定的。我们建议,具有相同表达模式和种间表达差异的高度冗余旁系同源物可能受明显不同的调控途径控制,因为自然选择可能倾向于不同的调控修饰,而不是关键的发育基因的编码序列改变,从而产生形态多样性。

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