Bioceres Crop Solutions, Rosario, Santa Fe, Argentina.
Plant Science Program, Biological and Environmental Science and Engineering Division (BESE), King Abdullah University of Science and Technology (KAUST), Thuwal, Saudi Arabia; email:
Annu Rev Phytopathol. 2024 Sep;62(1):193-215. doi: 10.1146/annurev-phyto-121423-042128. Epub 2024 Aug 22.
Wheat is the predominant crop worldwide, contributing approximately 20% of protein and calories to the human diet. However, the yield potential of wheat faces limitations due to pests, diseases, and abiotic stresses. Although conventional breeding has improved desirable traits, the use of modern transgenesis technologies has been limited in wheat in comparison to other crops such as maize and soybean. Recent advances in wheat gene cloning and transformation technology now enable the development of a super wheat consistent with the One Health goals of sustainability, food security, and environmental stewardship. This variety combines traits to enhance pest and disease resistance, elevate grain nutritional value, and improve resilience to climate change. In this review, we explore ways to leverage current technologies to combine and transform useful traits into wheat. We also address the requirements of breeders and legal considerations such as patents and regulatory issues.
小麦是全球范围内的主要作物,为人类饮食提供约 20%的蛋白质和卡路里。然而,由于病虫害和非生物胁迫,小麦的产量潜力受到限制。尽管传统的育种方法已经改善了一些理想的特性,但与玉米和大豆等其他作物相比,现代转基因技术在小麦中的应用受到限制。最近小麦基因克隆和转化技术的进步使得开发符合可持续性、粮食安全和环境管理的“超级小麦”成为可能。这种品种结合了一些特性,以增强对病虫害和疾病的抗性,提高谷物的营养价值,并提高对气候变化的适应能力。在这篇综述中,我们探讨了利用现有技术将有用的特性结合和转化到小麦中的方法。我们还讨论了育种者的要求和法律考虑因素,如专利和监管问题。