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Functional interaction between the homeotic genes fbp1 and pMADS1 during petunia floral organogenesis.

机译:矮牵牛花卉器官发生过程中同源基因fbp1和pMADS1之间的功能相互作用。

摘要

The petunia MADS box floral binding protein (fbp) gene 1 represents a class B homeotic gene determining the identity of second and third floral whorl organs. Suppression of fbp1, which is highly homologous to the Antirrhinum gene globosa and Arabidopsis gene pistillata, results in the conversion of petals to sepals and stamens to carpels. In contrast to fbp1, the petunia homeotic gene pMADS1, encoding a protein homologous to the Antirrhinum protein DEFICIENS, has been shown to be involved in the formation of petals only. We demonstrated that the induction of fbp1 is established independent of pMADS1, whereas at later developmental stages, fbp1 is up-regulated by pMADS1 in petals. On the other hand, the induction and maintenance of pMADS1 expression are not affected by fbp1. To obtain information about the functional interaction between fbp1 and pMADS1, an fbp1 cosuppression mutant with mild phenotypic alterations was crossed with a green petals mutant in which pMADS1 expression was abolished. Progeny plants, heterozygous for the pMADS1 gene, had flowers with a more pronounced reversion from petals into sepals than was observed for the parent fbp1 mutant. The morphology of the third whorl organs was not changed. These observations, together with expression levels of pMADS1 and fbp1 in mutant flowers, provide evidence for functional control of fbp1 by PMADS1 in vivo.
机译:矮牵牛MADS盒花结合蛋白(fbp)基因1代表B类同源基因,可确定第二和第三花轮器官的身份。与Antirrhinum基因球和拟南芥基因pistillata基因高度同源的fbp1的抑制导致花瓣转化为萼片,雄蕊转化为心皮。与fbp1相比,矮牵牛同源基因pMADS1编码的蛋白与抗腹泻蛋白DEFICIENS同源,已被证明仅参与花瓣的形成。我们证明了fbp1的诱导是独立于pMADS1建立的,而在以后的发育阶段,fbp1由pMADS1在花瓣中上调。另一方面,pMADS1表达的诱导和维持不受fbp1的影响。为了获得有关fbp1和pMADS1之间功能相互作用的信息,将具有轻微表型改变的fbp1共抑制突变体与绿色的花瓣突变体杂交,其中取消了pMADS1表达。与pMADS1突变体相比,pMADS1基因杂合的后代植物的花从花瓣到萼片的回复更为明显。第三轮器官的形态没有改变。这些观察结果,以及突变花中pMADS1和fbp1的表达水平,为通过PMADS1在体内功能性控制fbp1提供了证据。

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