Joint International Research Laboratory of Metabolic and Developmental Sciences, State Key Laboratory of Hybrid Rice, SJTU-University of Adelaide Joint Centre for Agriculture and Health, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China; Department of Oriental Medicinal Biotechnology, College of Life Science, Kyung Hee University, Yongin 446-701, South Korea.
Joint International Research Laboratory of Metabolic and Developmental Sciences, State Key Laboratory of Hybrid Rice, SJTU-University of Adelaide Joint Centre for Agriculture and Health, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China; School of Agriculture, Food, and Wine, University of Adelaide, South Australia 5064, Australia.
Trends Plant Sci. 2018 Jan;23(1):53-65. doi: 10.1016/j.tplants.2017.10.001. Epub 2017 Nov 7.
In many plant species, male-sterile female lines with cytoplasmic male sterility (CMS) or nuclear-controlled environment-sensitive genic male sterility (EGMS) have long been used to efficiently produce hybrids that harness hybrid vigor or heterosis. However, the underlying molecular mechanisms for these applications have only recently been uncovered in a few species. We provide here an update on the understanding of cytoplasmic-nuclear communication based on the discovery of mitochondrial CMS genes and their corresponding nuclear fertility determinants. Recent findings that uncover diverse mechanisms such as epigenetic, transcriptional, and post-transcriptional controls of EGMS by temperature and photoperiod signals are also reviewed. Furthermore, translational research that applies basic knowledge of plant male fertility control to hybrid seed production practice is highlighted.
在许多植物物种中,具有细胞质雄性不育(CMS)或核控环境敏感基因雄性不育(EGMS)的雄性不育雌性系长期以来一直被用于高效生产杂种,以利用杂种优势或杂种优势。然而,这些应用的潜在分子机制直到最近才在少数几个物种中被揭示出来。我们在这里提供了一个基于线粒体 CMS 基因及其对应的核育性决定因素的发现,对细胞质-核通讯的理解的最新更新。还回顾了最近的发现,这些发现揭示了温度和光周期信号对 EGMS 的多种机制,如表观遗传、转录和转录后调控。此外,还强调了将植物雄性育性控制的基础知识应用于杂种种子生产实践的转化研究。