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Petunia hybrida CAROTENOID CLEAVAGE DIOXYGENASE7 Is Involved in the Production of Negative and Positive Branching Signals in Petunia1[W][OA]

机译:矮牵牛类胡萝卜素裂解酶Dyoxygenase7参与矮牵牛1中负分支信号和正分支信号的产生[W] [OA]

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摘要

One of the key factors that defines plant form is the regulation of when and where branches develop. The diversity of form observed in nature results, in part, from variation in the regulation of branching between species. Two CAROTENOID CLEAVAGE DIOXYGENASE (CCD) genes, CCD7 and CCD8, are required for the production of a branch-suppressing plant hormone. Here, we report that the decreased apical dominance3 (dad3) mutant of petunia (Petunia hybrida) results from the mutation of the PhCCD7 gene and has a less severe branching phenotype than mutation of PhCCD8 (dad1). An analysis of the expression of this gene in wild-type, mutant, and grafted petunia suggests that in petunia, CCD7 and CCD8 are coordinately regulated. In contrast to observations in Arabidopsis (Arabidopsis thaliana), ccd7ccd8 double mutants in petunia show an additive phenotype. An analysis using dad3 or dad1 mutant scions grafted to wild-type rootstocks showed that when these plants produce adventitious mutant roots, branching is increased above that seen in plants where the mutant roots are removed. The results presented here indicate that mutation of either CCD7 or CCD8 in petunia results in both the loss of an inhibitor of branching and an increase in a promoter of branching.
机译:定义植物形态的关键因素之一是对何时何地发育分支的调控。在自然界中观察到的形式的多样性部分是由于物种之间分支规律的变化所致。产生抑制分支的植物激素需要两个类胡萝卜素裂解二氧合酶(CCD)基因CCD7和CCD8。在这里,我们报告说,矮牵牛(Petunia hybrida)的顶端优势3(dad3)突变是由于PhCCD7基因的突变导致的,并且其分支表型比PhCCD8(dad1)的突变严重。分析此基因在野生型,突变型和嫁接矮牵牛中的表达,表明在矮牵牛中,CCD7和CCD8是协调调控的。与拟南芥(Arabidopsis thaliana)的观察结果相反,矮牵牛中的ccd7ccd8双重突变体表现出加性表型。使用嫁接至野生型砧木的dad3或dad1突变接穗进行的分析表明,当这些植物产生不定突变根时,其分支增加得高于去除了突变根的植物。此处显示的结果表明矮牵牛中CCD7或CCD8的突变会导致分支抑制剂的丢失和分支启动子的增加。

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