雄性不育基因的分子克隆及其在植物杂种优势中的应用

Xiangyuan Wan, Suowei Wu
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引用次数: 6

摘要

本文综述了植物源性雄性不育(GMS)基因的分子克隆、功能鉴定及其在作物雄性不育(BMS)系统杂交育种和制种中的应用。主要内容包括四个部分:(1)GMS基因克隆策略,包括正向遗传方法(如基于图谱的克隆、T-DNA或转座子标记、MutMap方法)和反向遗传方法(如基于同源克隆、花药特异性表达基因筛选等反向遗传方法);(2) GMS基因功能确认方法,包括转基因互补、靶向诱变、等位基因突变检测与测序、花药时空表达分析、细胞学观察等;(3) GMS基因和突变体的应用价值评价,如GMS基因控制的雄性不育在不同遗传背景和多环境下的遗传稳定性分析、GMS基因对植物杂种优势的遗传效应及与不良性状的潜在连锁分析;(4)基于GMS基因和/或其突变体的BMS系统的开发和应用,包括转基因构建驱动的非转基因种子系统(如种子生产技术(SPT)和多控不育(MCS))和转基因雄性不育系统(如农达杂交系统(RHS1和RHS2)和Barnase/Barstar系统)。最后,对GMS基因的研究和高效环保的作物BMS系统的开发进行了总结和展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular Cloning of Genic Male-Sterility Genes and Their Applications for Plant Heterosis via Biotechnology-based Male-sterility Systems
In this chapter, we summarize the strategies about molecular cloning and functional confirmation of plant genic male-sterility (GMS) genes and their applications for hybrid breeding and seed production via biotechnology-based male-sterility (BMS) systems in crop plants. The main content includes four sections: (1) GMS gene cloning strategies, including forward genetic approaches (e.g., map-based cloning, T-DNA or transposon tagging, and MutMap method) and reverse genetic approaches (e.g., homology-based cloning, anther-specific expression gene screening, and other reverse genetic methods); (2) functional confirmation methods of GMS genes, including transgenic complementation, targeted mutagenesis, allelic mutant test and sequencing, anther spatiotemporal expression analysis, and cytological observation; (3) application value assessment of GMS genes and mutants, such as genetic stability analysis of male sterility controlled by GMS genes under different genetic backgrounds and multiple environments, and genetic effects driven by GMS genes on plant heterosis and analysis of potential linkage with bad traits; (4) development and application of BMS systems based on GMS genes and/or their mutants, including transgenic construct-driven non-transgenic seed systems (e.g., seed production technology (SPT) and multi-control sterility (MCS)), and transgenic male-sterility systems (e.g., roundup hybridization systems (RHS1 and RHS2) and Barnase/Barstar system). Finally, we summarize and provide our perspectives on the studies of GMS genes and development of cost-effective and environment-friendly BMS systems in crop plants.
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