Zhang Bo, Ma Ling, Wu Bi, Xing Yongzhong, Qiu Xianjin
National Key Laboratory of Crop Genetic Improvement and National Center of Plant Gene Research, Huazhong Agricultural University, Wuhan, China.
College of Agriculture, Yangtze University, Jingzhou, China.
Front Plant Sci. 2022 Apr 26;13:863789. doi: 10.3389/fpls.2022.863789. eCollection 2022.
The narrow base of genetic diversity of modern rice varieties is mainly attributed to the overuse of the common backbone parents that leads to the lack of varied favorable alleles in the process of breeding new varieties. Introgression lines (ILs) developed by a backcross strategy combined with marker-assisted selection (MAS) are powerful prebreeding tools for broadening the genetic base of existing cultivars. They have high power for mapping quantitative trait loci (QTLs) either with major or minor effects, and are used for precisely evaluating the genetic effects of QTLs and detecting the gene-by-gene or gene-by-environment interactions due to their low genetic background noise. ILs developed from multiple donors in a fixed background can be used as an IL platform to identify the best alleles or allele combinations for breeding by design. In the present paper, we reviewed the recent achievements from ILs in rice functional genomics research and breeding, including the genetic dissection of complex traits, identification of elite alleles and background-independent and epistatic QTLs, analysis of genetic interaction, and genetic improvement of single and multiple target traits. We also discussed how to develop ILs for further identification of new elite alleles, and how to utilize IL platforms for rice genetic improvement.
现代水稻品种遗传多样性的狭窄基础主要归因于常见骨干亲本的过度使用,这导致在新品种培育过程中缺乏多样的有利等位基因。通过回交策略结合分子标记辅助选择(MAS)培育的导入系(ILs)是拓宽现有品种遗传基础的强大预育种工具。它们在定位具有主效或微效的数量性状基因座(QTLs)方面具有强大功能,并且由于其低遗传背景噪声,可用于精确评估QTLs的遗传效应以及检测基因间或基因与环境间的相互作用。在固定背景下由多个供体培育的导入系可作为一个导入系平台,通过设计鉴定用于育种的最佳等位基因或等位基因组合。在本文中,我们综述了水稻导入系在功能基因组学研究和育种方面的最新成果,包括复杂性状的遗传剖析、优异等位基因以及背景独立和上位性QTLs的鉴定、遗传互作分析以及单目标和多目标性状的遗传改良。我们还讨论了如何培育导入系以进一步鉴定新的优异等位基因,以及如何利用导入系平台进行水稻遗传改良。