Department of Plant Sciences, Tel Aviv University, Tel Aviv 69978, Israel.
Plant Biotechnol J. 2010 May 1;8(4):425-35. doi: 10.1111/j.1467-7652.2009.00480.x. Epub 2010 Jan 13.
Enhancing plant height and growth rates is a principal objective of the fiber, pulp, wood and biomass product industries. Many biotechnological systems have been established to advance that task with emphasis on increasing the concentration of the plant hormone gibberellin, or on its signalling. In this respect, the most studied gibberellin biosynthesis enzyme is the GA 20-oxidase which catalyses the rate limiting step of the pathway. Overexpression of the gene resulted in an excessively high activity of the gibberellin deactivating enzyme, GA 2-oxidase. Consequently, this feedback regulation limits the intended outcome. We assume that silencing GA 2-oxidase transcription would abolish this antithetical effect, thereby allowing greater gibberellin accumulation. Here, we show that silencing the gibberellin deactivating enzyme in tobacco model plants results in a dramatic improvement of their growth characteristics, compared with the wild type and GA 20-oxidase over-expressing plants. Moreover, the number of xylem fiber cells in the silenced lines exceeded that of GA 20-oxidase over-expressing plants, potentially, making GA 2-oxidase silencing more profitable for the wood and fiber industries. Interestingly, crossing GA 20-oxidase over-expressing plants with GA 2-oxidase silenced plants did not yield consequential additive effects. Our findings unveil the benefits of silencing GA 2-oxidase to substantially increase tobacco growth and fiber production, which suggest using this approach in cultivated forest plantations and industrial herbaceous plants, worldwide.
提高植物的高度和生长速度是纤维、纸浆、木材和生物质产品产业的主要目标。许多生物技术系统已经建立起来,以推进这一任务,重点是提高植物激素赤霉素的浓度,或强调其信号转导。在这方面,研究最多的赤霉素生物合成酶是 GA 20-氧化酶,它催化途径的限速步骤。该基因的过表达导致赤霉素失活酶 GA 2-氧化酶的活性过高。因此,这种反馈调节限制了预期的结果。我们假设沉默 GA 2-氧化酶的转录将消除这种对立的影响,从而允许更多的赤霉素积累。在这里,我们表明,在烟草模式植物中沉默赤霉素失活酶会显著改善其生长特性,与野生型和 GA 20-氧化酶过表达植物相比。此外,沉默系的木质部纤维细胞数量超过了 GA 20-氧化酶过表达植物,可能使 GA 2-氧化酶沉默更有利于木材和纤维工业。有趣的是,将 GA 20-氧化酶过表达植物与 GA 2-氧化酶沉默植物杂交并没有产生显著的累加效应。我们的研究结果揭示了沉默 GA 2-氧化酶以显著增加烟草生长和纤维产量的好处,这表明在全球范围内,这种方法可以应用于栽培林分和工业草本植物。