Liu Decai, Yu Shicheng, Ji Biaojun, Peng Qi, Gao Jianqin, Zhang Jiefu, Guo Yue, Hu Maolong
Institute of Industrial Crops, Jiangsu Academy of Agricultural Sciences, Nanjing Sub-Center, National Center of Oil Crops Improvement, Key Laboratory of Cotton and Rapeseed (Nanjing), Ministry of Agriculture, Nanjing 210014, China.
Key Laboratory of Genetics, Breeding and Multiple Utilization of Crops, Ministry of Education/Key Laboratory of Biological Breeding for Fujian and Taiwan Crops, Ministry of Agriculture and Rural Affairs/College of Agriculture, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
Int J Mol Sci. 2025 Aug 26;26(17):8292. doi: 10.3390/ijms26178292.
Rapeseed () is a globally important oilseed crop whose yield and quality are frequently limited by weed competition. In recent years, there have been significant advances in our understanding of herbicide-resistance mechanisms in rapeseed and in the development of herbicide-resistant rapeseed germplasm. Here, we summarize the molecular mechanisms of resistance to three herbicides: glyphosate, glufosinate, and acetolactate synthase (ALS) inhibitors. We discuss progress in the identification of new resistance genes and the development of herbicide-resistant rapeseed germplasm, from the initial identification of natural mutants to artificial mutagenesis screening, introduction of exogenous resistance genes, and gene editing. In addition, we describe how synthetic biology and directed protein evolution will contribute to precision-breeding efforts in the near future. This is the first review to systematically integrate non-target resistance mechanisms and the potential applications of multi-omics and AI technologies for breeding of herbicide-resistant rapeseed, together with strategies for managing the risks associated with gene flow, the evolution of herbicide-resistant weeds, and the occurrence of volunteer plants resulting from deployment of herbicide-resistant rapeseed. By synthesizing current knowledge and future trends, this review provides guidance for safe, effective, and innovative approaches to the sustainable development of herbicide-resistant rapeseed.
油菜是一种全球重要的油料作物,其产量和品质常受杂草竞争的限制。近年来,我们对油菜抗除草剂机制的理解以及抗除草剂油菜种质的开发取得了重大进展。在此,我们总结了对三种除草剂(草甘膦、草铵膦和乙酰乳酸合成酶(ALS)抑制剂)的抗性分子机制。我们讨论了从天然突变体的初步鉴定到人工诱变筛选、外源抗性基因的导入以及基因编辑等方面在新抗性基因鉴定和抗除草剂油菜种质开发方面的进展。此外,我们还描述了合成生物学和定向蛋白质进化在不久的将来将如何助力精准育种工作。这是第一篇系统整合非靶标抗性机制、多组学和人工智能技术在抗除草剂油菜育种中的潜在应用,以及与基因流动、抗除草剂杂草进化和抗除草剂油菜种植导致自生苗出现相关风险的管理策略的综述。通过综合当前知识和未来趋势,本综述为抗除草剂油菜可持续发展的安全、有效和创新方法提供了指导。