Behrend Anne, Borchert Thomas, Hohe Annette
Leibniz Institute of Vegetable and Ornamental Crops (IGZ), Department of Plant Propagation, Kuehnhaueser Strasse 101, 99090, Erfurt, Germany.
Present address: Siemens Healthcare Diagnostics Holding GmbH, Ludwig-Erhard-Straße 12, 65760, Eschborn, Germany.
BMC Plant Biol. 2015 Jan 21;15:8. doi: 10.1186/s12870-014-0407-z.
The production of heather (Calluna vulgaris) in Germany is highly dependent on cultivars with mutated flower morphology, the so-called diplocalyx bud bloomers. So far, this unique flower type of C. vulgaris has not been reported in any other plant species. The flowers are characterised by an extremely extended flower attractiveness, since the flower buds remain closed throughout the complete flowering season. The flowers of C. vulgaris bud bloomers are male sterile, because the stamens are absent. Furthermore, petals are converted into sepals. Therefore the diplocalyx bud bloomer flowers consist of two whorls of sepals directly followed by the gynoecium.
A broad comparison was undertaken to identify genes differentially expressed in the bud flowering phenotype and in the wild type of C. vulgaris. Transcriptome sequence reads were generated using 454 sequencing of two flower type specific cDNA libraries. In total, 360,000 sequence reads were obtained, assembled to 12,200 contigs, functionally mapped, and annotated. Transcript abundances were compared and 365 differentially expressed genes detected. Among these differentially expressed genes, Calluna vulgaris PISTILLATA (CvPI) which is the orthologue of the Arabidopsis B gene PISTILLATA (PI) was considered as the most promising candidate gene. Quantitative Reverse Transcription Polymerase Chain Reaction (qRT PCR) was performed to analyse the gene expression levels of two C. vulgaris B genes CvPI and Calluna vulgaris APETALA 3 (CvAP3) in both flower types. CvAP3 which is the orthologue of the Arabidopsis B gene APETALA 3 (AP3) turned out to be ectopically expressed in sepals of wild type and bud bloomer flowers. CvPI expression was proven to be reduced in the bud blooming flowers.
Differential expression patterns of the B-class genes CvAP3 and CvPI were identified to cause the characteristic morphology of C. vulgaris flowers leading to the following hypotheses: ectopic expression of CvAP3 is a convincing explanation for the formation of a completely petaloid perianth in both flower types. In C. vulgaris, CvPI is essential for determination of petal and stamen identity. The characteristic transition of petals into sepals potentially depends on the observed deficiency of CvPI and CvAP3 expression in bud blooming flowers.
德国石南花(帚石楠)的生产高度依赖具有变异花形态的品种,即所谓的双萼芽开花品种。迄今为止,帚石楠这种独特的花型在其他任何植物物种中均未被报道。这些花的特点是具有极长的花吸引期,因为花芽在整个花期都保持闭合状态。帚石楠芽开花品种的花是雄性不育的,因为缺少雄蕊。此外,花瓣会转化为萼片。因此,双萼芽开花品种的花由两轮萼片直接接着雌蕊组成。
进行了广泛比较,以鉴定在帚石楠芽开花表型和野生型中差异表达的基因。使用两个花型特异性cDNA文库的454测序生成转录组序列读数。总共获得了360,000个序列读数,组装成12,200个重叠群,进行功能定位并注释。比较转录本丰度,检测到365个差异表达基因。在这些差异表达基因中,拟南芥B类基因PISTILLATA(PI)的直系同源基因帚石楠PISTILLATA(CvPI)被认为是最有前景的候选基因。进行了定量逆转录聚合酶链反应(qRT-PCR),以分析两个帚石楠B类基因CvPI和帚石楠APETALA 3(CvAP3)在两种花型中的基因表达水平。拟南芥B类基因APETALA 3(AP3)的直系同源基因CvAP3在野生型和芽开花型花的萼片中异位表达。已证明CvPI在芽开花型花中的表达降低。
已鉴定出B类基因CvAP3和CvPI的差异表达模式导致帚石楠花的特征形态,从而得出以下假设:CvAP3的异位表达是两种花型中完全花瓣状花被形成的一个有说服力的解释。在帚石楠中,CvPI对于确定花瓣和雄蕊的身份至关重要。花瓣向萼片的特征性转变可能取决于在芽开花型花中观察到的CvPI和CvAP3表达的缺乏。