Liang Liwen, Zhang Zhanyi, Cheng Niannian, Liu Haiyang, Song Song, Hu Yong, Zhou Xiangchun, Zhang Jia, Xing Yongzhong
National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, China.
College of Agriculture, Hubei Collaborative Innovation Center for Grain Industry, Yangtze University, Jingzhou, China.
Plant Cell Environ. 2021 Mar;44(3):842-855. doi: 10.1111/pce.13987. Epub 2021 Jan 9.
The phase transition from vegetative to reproductive growth is triggered by internal and external signals that participate in circadian clock in plants. We identified a rice floral inhibitor OsPRR73 encoding a CONSTANS protein. Overexpression of OsPRR73 resulted in late heading under both long-day (LD) and short-day (SD) conditions. Knockout mutants led to early heading under LD conditions but no change under SD. OsPRR73 mRNA accumulated at noon and exhibited a robust oscillation under constant light (LL) and constant darkness (DD) conditions. OsPRR73 overexpression exerted negative feedback on endogenous OsPRR73 expression and altered diurnal expressions of key flowering genes and circadian clock genes. OsPRR73 bound to the promoters of the floral gene Ehd1 and the circadian gene OsLHY, and significantly suppressed their expression at dawn. In LL and DD, the oscillatory patterns of the circadian genes OsLHY, OsTOC1, OsGI and OsELF3 were varied in OsPRR73OX and osprr73 mutants. OsPRR73 expression was decreased in osphyb mutants, and overexpression of OsPRR73 complemented the early heading date phenotype of osphyb, indicating OsPRR73 works downstream of OsPhyB. Therefore, OsPRR73 is involved in a feedback loop of the rice clock and connects the photoperiod flowering pathway by binding to the Ehd1 promoter in rice.
从营养生长到生殖生长的阶段转变是由参与植物生物钟的内部和外部信号触发的。我们鉴定出一种编码CONSTANS蛋白的水稻开花抑制因子OsPRR73。在长日照(LD)和短日照(SD)条件下,OsPRR73的过表达均导致抽穗延迟。敲除突变体在LD条件下导致抽穗提前,但在SD条件下没有变化。OsPRR73 mRNA在中午积累,并且在持续光照(LL)和持续黑暗(DD)条件下表现出强烈的振荡。OsPRR73过表达对内源OsPRR73表达产生负反馈,并改变关键开花基因和生物钟基因的昼夜表达。OsPRR73与开花基因Ehd1和生物钟基因OsLHY的启动子结合,并在黎明时显著抑制它们的表达。在LL和DD条件下,生物钟基因OsLHY、OsTOC1、OsGI和OsELF3的振荡模式在OsPRR73OX和osprr73突变体中有所不同。在osphyb突变体中OsPRR73表达降低,并且OsPRR73的过表达补充了osphyb的早抽穗日期表型,表明OsPRR73在OsPhyB的下游起作用。因此,OsPRR73参与水稻生物钟的反馈回路,并通过与水稻中Ehd1启动子结合连接光周期开花途径。