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Toward the Analysis of the Petunia MADS Box Gene Family by Reverse and Forward Transposon Insertion Mutagenesis Approaches: B C and D Floral Organ Identity Functions Require SEPALLATA-Like MADS Box Genes in Petunia

机译:通过反向和正向转座子插入诱变方法对矮牵牛MADS盒基因家族进行分析:BC和D花器官识别功能需要矮牵牛中的SEPALLATA样MADS盒基因

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摘要

We have initiated a systematic functional analysis of the MADS box, intervening region, K domain, C domain-type MADS box gene family in petunia. The starting point for this has been a reverse-genetics approach, aiming to select for transposon insertions into any MADS box gene. We have developed and applied a family signature insertion screening protocol that is highly suited for this purpose, resulting in the isolation of 32 insertion mutants in 20 different MADS box genes. In addition, we identified three more MADS box gene insertion mutants using a candidate-gene approach. The defined insertion lines provide a sound foundation for a systematic functional analysis of the MADS box gene family in petunia. Here, we focus on the analysis of Floral Binding Protein2 (FBP2) and FBP5 genes that encode the E-function, which in Arabidopsis has been shown to be required for B and C floral organ identity functions. fbp2 mutants display sepaloid petals and ectopic inflorescences originating from the third floral whorl, whereas fbp5 mutants appear as wild type. In fbp2 fbp5 double mutants, reversion of floral organs to leaf-like organs is increased further. Strikingly, ovules are replaced by leaf-like structures in the carpel, indicating that in addition to the B- and C-functions, the D-function, which specifies ovule development, requires E-function activity. Finally, we compare our data with results obtained using cosuppression approaches and conclude that the latter might be less suited for assigning functions to individual members of the MADS box gene family.
机译:我们已经开始对矮牵牛的MADS框,中间区域,K域,C域型MADS框基因家族进行系统的功能分析。这样做的起点是反向遗传学方法,旨在选择将转座子插入任何MADS盒基因中。我们已经开发并应用了非常适合此目的的家族签名插入筛选方案,从而在20个不同的MADS box基因中分离了32个插入突变体。此外,我们使用候选基因方法鉴定了另外三个MADS box基因插入突变体。定义的插入线为矮牵牛的MADS box基因家族的系统功能分析奠定了坚实的基础。在这里,我们重点分析编码E功能的花卉结合蛋白2(FBP2)和FBP5基因,在拟南芥中,这已被证明是B和C花卉器官同一性功能所必需的。 fbp2突变体显示出萼片花瓣和异位花序,起源于第三个花轮,而fbp5突变体显示为野生型。在fbp2 fbp5双突变体中,花器官向叶状器官的回复进一步增加。令人惊讶的是,胚珠被心皮中的叶状结构所取代,表明除B和C功能外,D功能(指定胚珠发育)还需要E功能活动。最后,我们将我们的数据与使用共抑制方法获得的结果进行比较,并得出结论,后者可能不太适合将功能分配给MADS box基因家族的各个成员。

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