Olimpieri Irene, Siligato Francesca, Caccia Riccardo, Mariotti Lorenzo, Ceccarelli Nello, Soressi Gian Piero, Mazzucato Andrea
Dipartimento di Agrobiologia e Agrochimica, Sezione di Genetica, Università degli Studi della Tuscia, Via S.C. de Lellis snc, 01100 Viterbo, Italy.
Planta. 2007 Sep;226(4):877-88. doi: 10.1007/s00425-007-0533-z. Epub 2007 May 15.
We investigated the role of gibberellins (GAs) in the phenotype of parthenocarpic fruit (pat), a recessive mutation conferring parthenocarpy in tomato (Solanum lycopersicum L.). Novel phenotypes that parallel those reported in plants repeatedly treated with gibberellic acid or having a GA-constitutive response indicate that the pat mutant probably expresses high levels of GA. The retained sensitivity to the GA-biosynthesis inhibitor paclobutrazol reveals that this condition is dependent on GA biosynthesis. Expression analysis of genes encoding key enzymes involved in GA biosynthesis shows that in normal tomato ovaries, the GA20ox1 transcript is in low copy number before anthesis and only pollination and fertilization increase its transcription levels and, thus, GA biosynthesis. In the unpollinated ovaries of the pat mutant, this mechanism is de-regulated and GA20ox1 is constitutively expressed, indicating that a high GA concentration could play a part in the parthenocarpic phenotype. The levels of endogenous GAs measured in the floral organs of the pat mutant support such a hypothesis. Collectively, the data indicate that transcriptional regulation of GA20ox1 mediates pollination-induced fruit set in tomato and that parthenocarpy in pat results from the mis-regulation of this mechanism. As genes involved in the control of GA synthesis (LeT6, LeT12 and LeCUC2) and response (SPY) are also altered in the pat ovary, it is suggested that the pat mutation affects a regulatory gene located upstream of the control of fruit set exerted by GAs.
我们研究了赤霉素(GAs)在单性结实果实(pat)表型中的作用,pat是番茄(Solanum lycopersicum L.)中一个导致单性结实的隐性突变。与用赤霉酸反复处理或具有GA组成型反应的植物中所报道的表型相似的新表型表明,pat突变体可能表达高水平的GA。对GA生物合成抑制剂多效唑仍保持敏感性,表明这种情况依赖于GA生物合成。对参与GA生物合成的关键酶编码基因的表达分析表明,在正常番茄子房里,GA20ox1转录本在开花前拷贝数较低,只有授粉和受精才会增加其转录水平,从而增加GA生物合成。在pat突变体未授粉的子房中,这种机制失调,GA20ox1组成型表达,表明高GA浓度可能在单性结实表型中起作用。在pat突变体花器官中测得的内源GA水平支持这一假设。总体而言,数据表明GA20ox1的转录调控介导了番茄授粉诱导的坐果,而pat中的单性结实是由该机制的调控失调导致的。由于参与GA合成(LeT6、LeT12和LeCUC2)和反应(SPY)控制的基因在pat子房中也发生了改变,因此表明pat突变影响了位于GA对坐果控制上游的一个调控基因。