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Phylogenetic analysis of the ''ECE' (CYC/TB1) clade reveals duplications predating the core eudicots

机译:对“ ECE”(CYC / TB1)进化枝的系统发育分析表明,重复发生在核心双子叶植物之前

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Flower symmetry is of special interest in understanding angiosperm evolution and ecology. Evidence from the Antirrhineae (snapdragon and relatives) indicates that several TO gene-family transcription factors, especially CYCLOIDEA (CYC) and DICHOTOMA (DICH), play a role in specifying dorsal identity in the corolla and androecium of monosymmetric (bilateral) flowers. Studies of rosid and asterid angiosperms suggest that orthologous TCP genes may be important in dorsal identity, but there has been no broad phylogenetic context to determine copy number or orthology. Here, we compare published data from rosids and asterids with newly collected data from ranunculids, caryophyllids, Saxifragales, and Asterales to ascertain the phylogenetic placement of major duplications in the "ECE" (CYC/TB1) clade of TCIP transcription factors. Bayesian analyses indicate that there are three major copies of "CYC" in the ECE clade, and that duplications leading to these copies predate the core eudicots. CYC1 contains no subsequent duplications and may not be expressed in floral tissue. CYC3 exhibits similar patterns of duplication to CYC2 in several groups. Using RT-PCR, we show that, in flowers of Lonicera morrowii (Caprifoliaceae), DipsCYC2B is expressed in the four dorsal petals and not in the ventral petal. DipsCYC3B is expressed in flower and petal primordia, possibly most strongly in the ventral petal.
机译:花的对称性对于理解被子植物的进化和生态学特别重要。来自Antirrhineae(金鱼草和亲戚)的证据表明,几种TO基因家族转录因子,特别是CYCLOIDEA(CYC)和DICHOTOMA(DICH),在确定单对称(双边)花的花冠和雄蕊的背侧身份中起作用。虫类和类固醇被子植物的研究表明直系同源的TCP基因可能在背侧身份中很重要,但是没有广泛的系统发育背景来确定拷贝数或正畸。在这里,我们将来自蔷薇和甾体的已发表数据与新近收集的来自无核小动物,石竹科植物,虎耳草和紫苑的数据进行比较,以确定在TCIP转录因子的“ ECE”(CYC / TB1)进化枝中主要重复的系统发生位置。贝叶斯分析表明,在欧洲经委会进化枝中存在“ CYC”的三个主要拷贝,导致这些拷贝的重复早于核心双子叶植物。 CYC1不包含任何后续重复,并且可能在花卉组织中不表达。 CYC3在几组中表现出与CYC2相似的重复模式。使用RT-PCR,我们显示,在忍冬属植物忍冬科植物的花朵中,DipsCYC2B在四个背瓣而不是在腹瓣中表达。 DipsCYC3B在花和花瓣的原基中表达,可能在腹瓣中最强烈。

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