Li Tengyu, Wang Chenlei, Pan Jingwen, Tabusam Javaria, Li Yan, Yao Jinbo, Chen Wei, Wang Yazhong, Gao Wei, Rong Junkang, Ahmad Zeeshan, Houben Andreas, Zhu Shouhong, Jin Shuangxia, Zhang Yongshan
State Key Laboratory of Cotton Bio-breeding and Integrated Utilization, Institute of Cotton Research, Chinese Academy of Agricultural Science, Anyang, China.
National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, China.
Plant Biotechnol J. 2025 Sep;23(9):4000-4016. doi: 10.1111/pbi.70197. Epub 2025 Jun 18.
Haploid induction (HI), an indispensable procedure in doubled haploid breeding, has attracted increasing attention in crop genetic improvement due to its ability to rapidly fix desirable traits in a homozygous state, thereby shortening the breeding cycle. However, HI has only been successfully implemented in a limited number of crops, and its underlying mechanisms remain largely enigmatic. This review summarizes five potential HI routes based on previous findings and the key events during the process of double fertilization in flowering plants. Among these HI methods, we suggest that sperm DNA fragmentation and ectopic expression of embryogenesis activator, as straightforward avenues for discovering new HI-related genes. We also emphasize that the combination of genome editing techniques with HI is a promising strategy to accelerate crop improvement and doubled haploid breeding. We envision that the proposed directions can pave the way for improving and deepening our understanding of HI mechanisms.
单倍体诱导(HI)是双单倍体育种中不可或缺的环节,因其能够迅速将优良性状固定在纯合状态,从而缩短育种周期,在作物遗传改良中受到越来越多的关注。然而,HI仅在少数作物中成功实现,其潜在机制在很大程度上仍不明确。本综述基于以往研究结果和开花植物双受精过程中的关键事件,总结了五条潜在的HI途径。在这些HI方法中,我们认为精子DNA片段化和胚胎发生激活因子的异位表达是发现新的HI相关基因的直接途径。我们还强调,将基因组编辑技术与HI相结合是加速作物改良和双单倍体育种的一种有前景的策略。我们设想,所提出的方向可为增进和深化我们对HI机制的理解铺平道路。