Sharma Rajiv, Yang Chin Jian, Rossi Nicola, Irving Emma, Tuffin Ashley, Aliki Hadi, Powell Wayne, Dawson Ian K
Principal's Research Group, Scotland's Rural College (SRUC), Edinburgh EH9 3JG, UK.
Trees Research Theme, World Agroforestry, CIFOR-ICRAF, Nairobi 00100, Kenya.
Plant Physiol. 2025 Jul 3;198(3). doi: 10.1093/plphys/kiaf087.
The appropriate use of molecular genetic approaches to reach impact in plant breeding is not straightforward. Here, we consider theory and realized application and explore key issues that early-career plant molecular genetic researchers especially should consider as they establish their careers, particularly in relation to opportunities in plant breeding that span academia and the private sector. Useful entry points for these researchers are an understanding of the plant breeding cycle and the breeder's equation. Becoming familiar with success and failure factors in the application of molecular genetics to practical plant breeding, including in relation to quantitative genetic principles, is also important. Other framing issues are scenario modeling for choosing between breeding scheme options, how agronomy and plant breeding interrelate, and the needs of future food production systems. We also recommend that early-career plant molecular genetic researchers look at whether pathways have been mapped out for how research will lead to impact at field level, whether stakeholders' perspectives have been accounted for, and whether the effectiveness of molecular genetic versus alternative interventions have been costed. Early-career researchers should also consider if effective systems are in place to monitor the values of molecular interventions and whether the necessary multidisciplinary teams are involved in crop development and deployment. We believe that through building a cadre of well-informed and well-connected early-career plant molecular genetic researchers, transformational change in the applications of molecular genetics to practical plant breeding will be enhanced.
恰当地运用分子遗传学方法在植物育种中取得成效并非易事。在此,我们探讨理论及实际应用,并探究早期职业植物分子遗传学研究人员在开启职业生涯时尤其应考虑的关键问题,特别是在涉及学术界和私营部门的植物育种机会方面。对这些研究人员而言,有用的切入点是了解植物育种周期和育种者方程。熟悉分子遗传学在实际植物育种应用中的成败因素,包括与数量遗传学原理相关的因素,也很重要。其他框架性问题包括用于在育种方案选项之间进行选择的情景建模、农学与植物育种如何相互关联以及未来粮食生产系统的需求。我们还建议早期职业植物分子遗传学研究人员审视是否已规划出研究如何在田间层面产生影响的途径、是否考虑了利益相关者的观点,以及分子遗传学干预与替代干预的有效性是否已进行成本核算。早期职业研究人员还应考虑是否具备有效的系统来监测分子干预的价值,以及必要的多学科团队是否参与了作物的开发和推广。我们相信,通过培养一批知识渊博且人脉广泛的早期职业植物分子遗传学研究人员,分子遗传学在实际植物育种中的应用将实现变革性转变。