Molesini Barbara, Rotino Giuseppe L, Spena Angelo, Pandolfini Tiziana
Dipartimento di Biotecnologie, University of Verona, Strada Le Grazie 15, 37134-Verona, Italy.
BMC Res Notes. 2009 Jul 21;2:143. doi: 10.1186/1756-0500-2-143.
Fruit normally develops from the ovary after pollination and fertilization. However, the ovary can also generate seedless fruit without fertilization by parthenocarpy. Parthenocarpic fruit development has been obtained in tomato (Solanum lycopersicum) by genetic modification using auxin-synthesising gene(s) (DefH9-iaaM; DefH9-RI-iaaM) expressed specifically in the placenta and ovules.
We have performed a cDNA Amplified Fragment Length Polymorphism (cDNA-AFLP) analysis on pre-anthesis tomato flower buds (0.5 cm long) collected from DefH9-iaaM and DefH9-RI-iaaM parthenocarpic and wild-type plants, with the aim to identify genes involved in very early phases of tomato fruit development. We detected 212 transcripts differentially expressed in auxin-ipersynthesising pre-anthesis flower buds, 65 of them (31%) have unknown function. Several differentially expressed genes show homology to genes involved in protein trafficking and protein degradation via proteasome. These processes are crucial for auxin cellular transport and signaling, respectively.
The data presented might contribute to elucidate the molecular basis of the fruiting process and to develop new methods to confer parthenocarpy to species of agronomic interest. In a recently published work, we have demonstrated that one of the genes identified in this screening, corresponding to #109 cDNA clone, regulates auxin-dependent fruit initiation and its suppression causes parthenocarpic fruit development in tomato.
果实通常在授粉和受精后由子房发育而来。然而,子房也可以通过单性结实,在未受精的情况下产生无籽果实。通过使用在胎座和胚珠中特异性表达的生长素合成基因(DefH9-iaaM;DefH9-RI-iaaM)进行基因改造,已在番茄(Solanum lycopersicum)中实现了单性结实果实发育。
我们对从DefH9-iaaM和DefH9-RI-iaaM单性结实及野生型植株上采集的花前番茄花蕾(0.5厘米长)进行了cDNA扩增片段长度多态性(cDNA-AFLP)分析,目的是鉴定参与番茄果实发育早期阶段的基因。我们检测到在生长素合成的花前花蕾中有212个转录本差异表达,其中65个(31%)功能未知。几个差异表达基因与参与蛋白质运输和通过蛋白酶体进行蛋白质降解的基因具有同源性。这些过程分别对生长素的细胞运输和信号传导至关重要。
所呈现的数据可能有助于阐明结果过程的分子基础,并开发新方法,使具有农艺价值的物种实现单性结实。在最近发表的一项研究中,我们证明了在此筛选中鉴定出的一个基因,对应于#109 cDNA克隆,调节生长素依赖性的果实起始,其抑制导致番茄单性结实果实发育。