Syngenta Centre for Sugar Cane Biofuels Development, Centre for Tropical Crops and Biocommodities, Queensland University of Technology, Brisbane, QLD, 4001, Australia,
Plant Mol Biol. 2014 Mar;84(4-5):497-508. doi: 10.1007/s11103-013-0147-8. Epub 2013 Oct 23.
Sugar cane is a major source of food and fuel worldwide. Biotechnology has the potential to improve economically-important traits in sugar cane as well as diversify sugar cane beyond traditional applications such as sucrose production. High levels of transgene expression are key to the success of improving crops through biotechnology. Here we describe new molecular tools that both expand and improve gene expression capabilities in sugar cane. We have identified promoters that can be used to drive high levels of gene expression in the leaf and stem of transgenic sugar cane. One of these promoters, derived from the Cestrum yellow leaf curling virus, drives levels of constitutive transgene expression that are significantly higher than those achieved by the historical benchmark maize polyubiquitin-1 (Zm-Ubi1) promoter. A second promoter, the maize phosphonenolpyruvate carboxylate promoter, was found to be a strong, leaf-preferred promoter that enables levels of expression comparable to Zm-Ubi1 in this organ. Transgene expression was increased approximately 50-fold by gene modification, which included optimising the codon usage of the coding sequence to better suit sugar cane. We also describe a novel dual transcriptional enhancer that increased gene expression from different promoters, boosting expression from Zm-Ubi1 over eightfold. These molecular tools will be extremely valuable for the improvement of sugar cane through biotechnology.
甘蔗是全球主要的食物和燃料来源。生物技术有可能改良甘蔗的经济重要性状,并使甘蔗用途多样化,超越蔗糖生产等传统用途。在通过生物技术改良作物方面,实现高水平的转基因表达是成功的关键。在这里,我们描述了一些新的分子工具,这些工具既能扩大又能提高甘蔗中的基因表达能力。我们已经鉴定了一些启动子,它们可用于驱动转基因甘蔗叶片和茎中高水平的基因表达。其中一个启动子来自喇叭水仙黄化卷叶病毒,驱动的组成型转基因表达水平明显高于历史基准的玉米泛素-1(Zm-Ubi1)启动子。第二个启动子,即玉米磷酸烯醇丙酮酸羧化酶启动子,被发现是一种强的、偏好叶片的启动子,可使该器官中的表达水平与 Zm-Ubi1 相当。通过基因修饰,转基因表达增加了约 50 倍,其中包括优化编码序列的密码子使用,以更好地适应甘蔗。我们还描述了一种新颖的双转录增强子,它可增强不同启动子的基因表达,使 Zm-Ubi1 的表达提高了 8 倍以上。这些分子工具对于通过生物技术改良甘蔗将非常有价值。