Ryu Choong-Hwan, Lee Shinyoung, Cho Lae-Hyeon, Kim Song Lim, Lee Yang-Seok, Choi Sang Chul, Jeong Hee Joong, Yi Jakyung, Park Soon Ju, Han Chang-Deok, An Gynheung
Department of Life Science and Functional Genomic Center, Pohang University of Science and Technology (POSTECH), Pohang, Korea.
Plant Cell Environ. 2009 Oct;32(10):1412-27. doi: 10.1111/j.1365-3040.2009.02008.x. Epub 2009 Jun 10.
In much of the tropics and subtropics, rice (Oryza sativa L.) is grown under long days (LDs). Therefore, LD must play a major role in inducing flowering signal in rice. However, little is known on LD-dependent flowering signal in the species. We previously reported that OsMADS50, which is highly homologous to Arabidopsis SOC1, functions as a positive regulator for flowering. However, its detailed photoperiodic mechanism was not yet elucidated. Here, we report the functional analysis of OsMADS50 and its closely related gene OsMADS56. Knock-out of OsMADS50 caused a late-flowering phenotype only under LD conditions. Overexpression of OsMADS56 (56OX) also resulted in delayed flowering under LD. In the osmads50 mutants and 56OX transgenic plants, transcripts of Ehd1, Hd3a and RFT1 were reduced, although that of OsLFL1 increased. On the other hand, mRNA levels of OsGI, Hd1, OsId1, OsDof12, Ghd7, Hd6 and SE5 were unchanged. These observations imply that OsMADS50 and OsMADS56 function antagonistically through OsLFL1-Ehd1 in regulating LD-dependent flowering. Yeast two-hybrid and co-immunoprecipitation analyses indicated an interaction between those two proteins as well as their formation of homodimers. These results suggest that OsMADS50 and OsMADS56 may form a complex that regulates downstream target genes.
在大部分热带和亚热带地区,水稻(Oryza sativa L.)是在长日照条件下种植的。因此,长日照必定在水稻开花信号诱导中起主要作用。然而,关于该物种中依赖长日照的开花信号却知之甚少。我们之前报道过,与拟南芥SOC1高度同源的OsMADS50作为开花的正向调节因子发挥作用。然而,其详细的光周期机制尚未阐明。在此,我们报道了OsMADS50及其紧密相关基因OsMADS56的功能分析。敲除OsMADS50仅在长日照条件下导致晚花表型。过表达OsMADS56(56OX)在长日照下也导致开花延迟。在osmads50突变体和56OX转基因植株中,Ehd1、Hd3a和RFT1的转录本减少,尽管OsLFL1的转录本增加。另一方面,OsGI、Hd1、OsId1、OsDof12、Ghd7、Hd6和SE5的mRNA水平未发生变化。这些观察结果表明,OsMADS50和OsMADS56通过OsLFL1-Ehd1在调节依赖长日照的开花过程中发挥拮抗作用。酵母双杂交和免疫共沉淀分析表明这两种蛋白之间存在相互作用以及它们形成同二聚体。这些结果表明,OsMADS50和OsMADS56可能形成一个调节下游靶基因的复合体。