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植物光敏色素与 OsELF3-1 的遗传关系揭示了水稻中光敏色素信号抑制的调控模式。

Genetic Relationship Between Phytochromes and OsELF3-1 Reveals the Mode of Regulation for the Suppression of Phytochrome Signaling in Rice.

机构信息

National Agriculture and Food Research Organization, Institute of Crop Science, NARO (NICS), Kannondai 2-1-2, Tsukuba, Japan.

Functional Plant Research Unit, National Institute of Agrobiological Sciences (NIAS), Kannondai, Tsukuba, Japan.

出版信息

Plant Cell Physiol. 2019 Mar 1;60(3):549-561. doi: 10.1093/pcp/pcy225.

Abstract

EARLY FLOWERING3 (ELF3) functions as a night-time repressor required for sustaining circadian rhythms and co-ordinating growth and development in various plant species. The rice genome carries two ELF3 homologs, namely OsELF3-1 and OsELF3-2. Previous studies have suggested that OsELF3-1 has a predominant role in controlling rice photoperiodic flowering, while also contributing to the transcriptional regulation of rice floral regulators expressed in the morning. However, OsELF3-1 has not been functionally characterized. Here, we observed that the oself3-1 mutation suppresses the photoperiod-insensitive early flowering of photoperiod sensitivity5 (se5), which is a chromophore-deficient rice mutant. Detailed analyses of the se5oself3-1 double mutant revealed the recovery of the phytochrome-dependent expression of Grain number, plant height, and heading date7 (Ghd7), a floral repressor, and Light-harvesting chlorophyll a/b binding protein (Lhcb) genes. Although the oself3-1 mutation recovered Ghd7 expression in the se5 background, there was a lack of Ghd7 expression in the phyAphyBphyC triple mutant background. These observations suggest that OsELF3-1 represses Ghd7 expression by inhibiting the phytochrome signaling pathway. Comparative genome analyses indicated that OsELF3-1 was produced via gene duplication events in Oryza species, and that it is expressed throughout the day. A comparison between the oself3-1 mutant and transgenic rice lines in which OsELF3-1 and OsELF3-2 are simultaneously silenced uncovered a role for OsELF3-1 in addition to the canonical ELF3 function as an evolutionarily conserved role for a night-time repressor that regulates the rice circadian clock. Our study confirmed that an ELF3 paralog, OsELF3-1, had a unique role involving the suppression of phytochrome signaling.

摘要

EARLY FLOWERING3(ELF3)作为一种夜间抑制剂,在维持昼夜节律和协调各种植物物种的生长和发育方面发挥作用。水稻基因组携带两个 ELF3 同源物,即 OsELF3-1 和 OsELF3-2。先前的研究表明,OsELF3-1 在控制水稻光周期开花方面起主要作用,同时也有助于调控在早晨表达的水稻花调控因子的转录。然而,OsELF3-1 的功能尚未得到充分表征。在这里,我们观察到 oself3-1 突变抑制了光周期不敏感的光周期敏感性 5(se5)的早期开花,se5 是一种缺少生色团的水稻突变体。对 se5oself3-1 双突变体的详细分析揭示了植物高度和抽穗期 7(Ghd7)的恢复,Ghd7 是一种花抑制因子和光捕获叶绿素 a/b 结合蛋白(Lhcb)基因的依赖光的表达。尽管 oself3-1 突变在 se5 背景中恢复了 Ghd7 的表达,但在 phyAphyBphyC 三重突变体背景中缺乏 Ghd7 的表达。这些观察结果表明,OsELF3-1 通过抑制光敏色素信号通路来抑制 Ghd7 的表达。比较基因组分析表明,OsELF3-1 是在水稻物种中通过基因重复事件产生的,并且在全天表达。在 oself3-1 突变体和同时沉默 OsELF3-1 和 OsELF3-2 的转基因水稻品系之间的比较表明,除了作为进化上保守的夜间抑制剂的典型 ELF3 功能外,OsELF3-1 还具有另外的功能,它调节水稻生物钟。我们的研究证实,ELF3 旁系同源物 OsELF3-1 具有独特的作用,涉及抑制光敏色素信号。

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