Cao Shuanghe, Luo Xumei, Xu Dengan, Tian Xiuling, Song Jie, Xia Xianchun, Chu Chengcai, He Zhonghu
Institute of Crop Sciences, National Wheat Improvement Center, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.
State Key Laboratory of Plant Genomics, Institute of Genetics and Developmental Biology, The Innovative Academy for Seed Design, Chinese Academy of Sciences, Beijing, 100101, China.
New Phytol. 2021 Jun;230(5):1731-1745. doi: 10.1111/nph.17276. Epub 2021 Mar 21.
Timely flowering is essential for optimum crop reproduction and yield. To determine the best flowering-time genes (FTGs) relevant to local adaptation and breeding, it is essential to compare the interspecific genetic architecture of flowering in response to light and temperature, the two most important environmental cues in crop breeding. However, the conservation and variations of FTGs across species lack systematic dissection. This review summarizes current knowledge on the genetic architectures underlying light and temperature-mediated flowering initiation in Arabidopsis, rice, and temperate cereals. Extensive comparative analyses show that most FTGs are conserved, whereas functional variations in FTGs may be species specific and confer local adaptation in different species. To explore evolutionary dynamics underpinning the conservation and variations in FTGs, domestication and selection of some key FTGs are further dissected. Based on our analyses of genetic control of flowering time, a number of key issues are highlighted. Strategies for modulation of flowering behavior in crop breeding are also discussed. The resultant resources provide a wealth of reference information to uncover molecular mechanisms of flowering in plants and achieve genetic improvement in crops.
适时开花对于作物实现最佳繁殖和产量至关重要。为了确定与本地适应性和育种相关的最佳开花时间基因(FTGs),比较开花对光照和温度(作物育种中两个最重要的环境因素)的种间遗传结构至关重要。然而,FTGs在物种间的保守性和变异性缺乏系统的剖析。本综述总结了目前关于拟南芥、水稻和温带谷类作物中光和温度介导的开花起始的遗传结构的知识。广泛的比较分析表明,大多数FTGs是保守的,而FTGs的功能变异可能具有物种特异性,并赋予不同物种本地适应性。为了探索FTGs保守性和变异性背后的进化动态,进一步剖析了一些关键FTGs的驯化和选择过程。基于我们对开花时间遗传控制的分析,突出了一些关键问题。还讨论了作物育种中调控开花行为的策略。由此产生的资源为揭示植物开花的分子机制和实现作物遗传改良提供了丰富的参考信息。