Kumar Tanweer, Wang Jun-Gang, Xu Chao-Hua, Lu Xin, Mao Jun, Lin Xiu-Qin, Kong Chun-Yan, Li Chun-Jia, Li Xu-Juan, Tian Chun-Yan, Ebid Mahmoud H M, Liu Xin-Long, Liu Hong-Bo
National Key Laboratory for Tropical Crop Breeding, Sugarcane Research Institute, Yunnan Academy of Agricultural Sciences, Yunnan Key Laboratory of Sugarcane Genetic Improvement, Kaiyuan 661699, China.
Sugar Crops Research Institute, Agriculture, Fisheries and Co-Operative Department, Charsadda Road, Mardan 23210, Khyber Pakhtunkhwa, Pakistan.
Plants (Basel). 2024 Jun 24;13(13):1739. doi: 10.3390/plants13131739.
Sugarcane, a vital cash crop, contributes significantly to the world's sugar supply and raw materials for biofuel production, playing a significant role in the global sugar industry. However, sustainable productivity is severely hampered by biotic and abiotic stressors. Genetic engineering has been used to transfer useful genes into sugarcane plants to improve desirable traits and has emerged as a basic and applied research method to maintain growth and productivity under different adverse environmental conditions. However, the use of transgenic approaches remains contentious and requires rigorous experimental methods to address biosafety challenges. Clustered regularly interspaced short palindromic repeat (CRISPR) mediated genome editing technology is growing rapidly and may revolutionize sugarcane production. This review aims to explore innovative genetic engineering techniques and their successful application in developing sugarcane cultivars with enhanced resistance to biotic and abiotic stresses to produce superior sugarcane cultivars.
甘蔗是一种重要的经济作物,对全球食糖供应和生物燃料生产的原材料贡献巨大,在全球食糖产业中发挥着重要作用。然而,生物和非生物胁迫严重阻碍了其可持续生产力。基因工程已被用于将有用基因导入甘蔗植株以改善理想性状,并已成为在不同不利环境条件下维持生长和生产力的基础及应用研究方法。然而,转基因方法的使用仍然存在争议,需要严格的实验方法来应对生物安全挑战。成簇规律间隔短回文重复序列(CRISPR)介导的基因组编辑技术发展迅速,可能会给甘蔗生产带来变革。本综述旨在探索创新的基因工程技术及其在培育对生物和非生物胁迫具有更强抗性的甘蔗品种以生产优质甘蔗品种方面的成功应用。