Goldshmidt Alexander, Ziegler Todd, Zhou Dafeng, Brower-Toland Brent, Preuss Sasha, Slewinski Thomas
Bayer Crop Science Chesterfield Missouri USA.
Present address: The Volcani Agriculture Institute Rishon LeZion Israel.
Plant Direct. 2022 Nov 25;6(11):e459. doi: 10.1002/pld3.459. eCollection 2022 Nov.
Breeding programs aim to improve crop yield and environmental stability for enhanced food security. The principal methodology in breeding for stable yield gain relies on the indirect selection of beneficial genetics by yield evaluation across diverse environmental conditions. This methodology requires substantial resources while delivering a slow pace of yield gain and environmental adaptation. Alternative methods are required to accelerate gain and adaptation, becoming even more imperative in a changing climate. New molecular tools and approaches can enable accelerated creation and deployment of multiple alleles of genes identified to control key traits. With the advent of tools that enable breeding by targeted allelic selection, identifying gene targets associated with an improved crop performance ideotype will become crucial. Previous studies have shown that altered photoperiod regimes increase yield in wheat (). In the current study, we have employed such treatments to study the resulting yield ideotype in five spring wheat cultivars. We found that the photoperiod treatment creates a yield ideotype arising from delayed spike establishment rates that are accompanied by increased early shoot expression of () genes. Genes identified in this way could be used for ideotype-based improve crop performance through targeted allele creation and selection in relevant environments.
育种计划旨在提高作物产量和环境稳定性,以增强粮食安全。稳定增产育种的主要方法依赖于通过在不同环境条件下进行产量评估来间接选择有益基因。这种方法需要大量资源,同时产量增长和环境适应性提升的速度较慢。需要采用替代方法来加速增产和适应,在气候变化的背景下,这一点变得更加迫切。新的分子工具和方法能够加速创建和部署已确定控制关键性状的基因的多个等位基因。随着通过靶向等位基因选择进行育种的工具的出现,确定与改良作物表现理想型相关的基因靶点将变得至关重要。先前的研究表明,改变光周期模式可提高小麦产量()。在本研究中,我们采用了此类处理方法来研究五个春小麦品种由此产生的产量理想型。我们发现,光周期处理产生了一种产量理想型,其源于穗形成速率延迟,并伴随着()基因早期地上部表达增加。以这种方式鉴定出的基因可用于通过在相关环境中进行靶向等位基因创建和选择,基于理想型提高作物表现。