Parvaiz Aqsa, Mustafa Ghulam, Khan Muhammad Sarwar, Ali Muhammad Amjad
Center of Agricultural Biochemistry and Biotechnology (CABB), University of Agriculture, University Road, Faisalabad 38040, PB, Pakistan.
Department of Plant Pathology, University of Agriculture, University Road, Faisalabad 38040, PB, Pakistan.
Plants (Basel). 2021 Apr 26;10(5):869. doi: 10.3390/plants10050869.
Sugarcane being the major contributor of sugar and potential source of biofuel around the globe, occupies significant commercial importance. Red rot is the most devastating disease of sugarcane, severely affecting its quality as well as yield. Here we report the overexpression of and genes in any field crop for the first time. For this purpose, and were cloned downstream of maize ubiquitin (1) promoter to construct two independent expression cassettes. The gene conferring resistance against phosphinothricin was used as selectable marker. Embryogenic calli of sugarcane were bombarded with both expression cassettes and selected on regeneration medium supplemented with phosphinothricin. The phosphinothricin-resistant shoots were rooted and then, analyzed using molecular tools at the genomic as well as transcriptomic levels. The transcriptomic analysis, using real time qPCR, showed that expression of (SWO) and (SWT) was higher in transgenic plants as compared to untransformed plants. Our results further demonstrated that over expression of these genes under maize ubiquitin (-1) promoter causes significant restriction in proliferation of red rot causal agent, in sugarcane transgenic plants, under in vitro conditions. This report may open up exciting possibilities to extend this technology to other monocots for the development of crops with better ability to withstand fungal pathogens.
甘蔗作为全球糖的主要贡献者和生物燃料的潜在来源,具有重要的商业价值。赤腐病是甘蔗最具毁灭性的病害,严重影响其品质和产量。在此,我们首次报道了在任何大田作物中过表达[具体基因名称未给出]和[具体基因名称未给出]基因。为此,将[具体基因名称未给出]和[具体基因名称未给出]克隆到玉米泛素(1)启动子下游,构建了两个独立的表达盒。赋予对草丁膦抗性的[具体基因名称未给出]基因用作选择标记。用两个表达盒对甘蔗胚性愈伤组织进行轰击,并在添加草丁膦的再生培养基上进行筛选。将抗草丁膦的芽生根,然后在基因组和转录组水平上使用分子工具进行分析。使用实时定量PCR进行的转录组分析表明,与未转化的植物相比,转基因植物中[具体基因名称未给出](SWO)和[具体基因名称未给出](SWT)的表达更高。我们的结果进一步证明,在玉米泛素(-1)启动子下过表达这些基因会在体外条件下显著限制甘蔗转基因植物中赤腐病病原体[具体病原体名称未给出]的增殖。本报告可能为将该技术扩展到其他单子叶植物以培育具有更强抗真菌病原体能力的作物开辟令人兴奋的可能性。