State Key Laboratory of Hybrid Rice, Key Laboratory for Research and Utilization of Heterosis in Indica Rice, Ministry of Agriculture, College of Life Sciences, Wuhan University Wuhan, People's Republic of China ; Key Laboratory of Plant Germplasm Enhancement and Speciality Agriculture, Wuhan Botanical Garden, Chinese Academy of Sciences Wuhan, People's Republic of China.
Front Plant Sci. 2013 Apr 11;4:92. doi: 10.3389/fpls.2013.00092. eCollection 2013.
Rice is one of the most important model crop plants whose heterosis has been well-exploited in commercial hybrid seed production via a variety of types of male-sterile lines. Hybrid rice cultivation area is steadily expanding around the world, especially in Southern Asia. Characterization of genes and proteins related to male sterility aims to understand how and why the male sterility occurs, and which proteins are the key players for microspores abortion. Recently, a series of genes and proteins related to cytoplasmic male sterility (CMS), photoperiod-sensitive male sterility, self-incompatibility, and other types of microspores deterioration have been characterized through genetics or proteomics. Especially the latter, offers us a powerful and high throughput approach to discern the novel proteins involving in male-sterile pathways which may help us to breed artificial male-sterile system. This represents an alternative tool to meet the critical challenge of further development of hybrid rice. In this paper, we reviewed the recent developments in our understanding of male sterility in rice hybrid production across gene, protein, and integrated network levels, and also, present a perspective on the engineering of male-sterile lines for hybrid rice production.
水稻是最重要的模式作物之一,其杂种优势已通过多种类型的雄性不育系在商业杂交种子生产中得到充分利用。杂交水稻种植面积在全球范围内稳步扩大,特别是在南亚。与雄性不育相关的基因和蛋白质的特征旨在了解雄性不育发生的方式和原因,以及哪些蛋白质是花粉败育的关键因素。最近,通过遗传学或蛋白质组学,已经对与细胞质雄性不育(CMS)、光周期敏感雄性不育、自交不亲和以及其他类型的花粉退化相关的一系列基因和蛋白质进行了表征。特别是后者为我们提供了一种强大且高通量的方法来识别涉及雄性不育途径的新蛋白质,这可能有助于我们培育人工雄性不育系统。这是应对进一步发展杂交水稻的关键挑战的另一种工具。本文综述了在基因、蛋白质和综合网络水平上对水稻杂种生产中雄性不育的理解的最新进展,并对用于杂交水稻生产的雄性不育系的工程进行了展望。