Institute of Genomics for Crop Abiotic Stress Tolerance, Texas Tech University, Lubbock, 79409, Texas, USA.
Graduate School of Agriculture, Kyoto University, Sakyo-ku, Kitashirakawa, 606-8502, Kyoto, Japan.
Plant J. 2024 Aug;119(4):1685-1702. doi: 10.1111/tpj.16887. Epub 2024 Jun 27.
This review explores the integration of wild grass-derived alleles into modern bread wheat breeding to tackle the challenges of climate change and increasing food demand. With a focus on synthetic hexaploid wheat, this review highlights the potential of genetic variability in wheat wild relatives, particularly Aegilops tauschii, for improving resilience to multifactorial stresses like drought, heat, and salinity. The evolutionary journey of wheat (Triticum spp.) from diploid to hexaploid species is examined, revealing significant genetic contributions from wild grasses. We also emphasize the importance of understanding incomplete lineage sorting in the genomic evolution of wheat. Grasping this information is crucial as it can guide breeders in selecting the appropriate alleles from the gene pool of wild relatives to incorporate into modern wheat varieties. This approach improves the precision of phylogenetic relationships and increases the overall effectiveness of breeding strategies. This review also addresses the challenges in utilizing the wheat wild genetic resources, such as the linkage drag and cross-compatibility issues. Finally, we culminate the review with future perspectives, advocating for a combined approach of high-throughput phenotyping tools and advanced genomic techniques to comprehensively understand the genetic and regulatory architectures of wheat under stress conditions, paving the way for more precise and efficient breeding strategies.
本文综述了将野生草衍生等位基因整合到现代小麦育种中的研究进展,以应对气候变化和日益增长的粮食需求带来的挑战。本综述聚焦于合成六倍体小麦,强调了小麦野生近缘种(特别是节节麦)遗传变异在提高对多因素胁迫(如干旱、高温和盐胁迫)的适应能力方面的潜力。文中还探讨了小麦(Triticum spp.)从二倍体到六倍体物种的进化历程,揭示了野生禾本科植物对小麦基因组的重要遗传贡献。此外,我们还强调了理解小麦基因组进化中不完全谱系分选的重要性。了解这一信息对于指导育种者从野生近缘种的基因库中选择合适的等位基因并将其整合到现代小麦品种中至关重要,这可以提高系统发育关系的准确性并增强整体育种策略的效果。本文还讨论了利用小麦野生遗传资源所面临的挑战,如连锁累赘和杂交亲和性问题。最后,我们对未来的研究方向进行了展望,提倡采用高通量表型分析工具和先进的基因组技术相结合的方法,全面了解小麦在胁迫条件下的遗传和调控结构,为更精确和高效的育种策略铺平道路。