首页> 外文期刊>The Plant Cell >Evolution of double positive autoregulatory feedback loops in CYCLOIDEA2 clade genes is associated with the origin of floral zygomorphy.
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Evolution of double positive autoregulatory feedback loops in CYCLOIDEA2 clade genes is associated with the origin of floral zygomorphy.

机译:CYCLOIDEA2进化枝基因中双正向自动调节反馈环的进化与花合的起源有关。

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Members of the CYCLOIDEA2 (CYC2) clade of the TEOSINTE BRANCHED1, CYCLOIDEA, and PCF transcription factor genes are widely involved in controlling floral zygomorphy, a key innovation in angiosperm evolution, depending on their persistently asymmetric expression in the corresponding floral domains. However, it is unclear how this asymmetric expression is maintained throughout floral development. Selecting Primulina heterotricha as a model, we examined the expression and function of two CYC2 genes, CYC1C and CYC1D. We analyzed the role of their promoters in protein-DNA interactions and transcription activation using electrophoresis mobility shift assays, chromatin immunoprecipitation, and transient gene expression assays. We find that CYC1C and CYC1D positively autoregulate themselves and cross-regulate each other. Our results reveal a double positive autoregulatory feedback loop, evolved for a pair of CYC2 genes to maintain their expression in developing flowers. Further comparative genome analyses, together with the available expression and function data of CYC2 genes in the core eudicots, suggest that this mechanism might have led to the independent origins of floral zygomorphy, which are associated with plant-insect coevolution and the adaptive radiation of angiosperms.Digital Object Identifier http://dx.doi.org/10.1105/tpc.112.099457
机译:TEOSINTE BRANCHED1,CYCLOIDEA和PCF转录因子基因的CYCLOIDEA2(CYC2)进化枝成员广泛参与控制花合子,这是被子植物进化的关键创新,取决于它们在相应花域中的持续不对称表达。然而,尚不清楚在整个花发育过程中如何保持这种不对称表达。选择 Primulina heterotricha 作为模型,我们研究了两个CYC2基因 CYC1C 和 CYC1D 的表达和功能。我们使用电泳迁移率迁移测定,染色质免疫沉淀和瞬时基因表达测定分析了它们启动子在蛋白质-DNA相互作用和转录激活中的作用。我们发现 CYC1C 和 CYC1D 积极地自我调节自己,相互交叉调节。我们的结果揭示了一个双正向自动调节反馈环,该环为一对CYC2基因进化而保持其在发育中的花中的表达。进一步的比较基因组分析,以及核心双子叶植物中CYC2基因的可用表达和功能数据,表明该机制可能导致了花合子的独立起源,这与植物-昆虫的共同进化和被子植物的适应性辐射有关。 。数字对象标识符http://dx.doi.org/10.1105/tpc.112.099457

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