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Arabidopsis ELF4-like proteins EFL1 and EFL3 influence flowering time

机译:拟南芥elf4样蛋白质efl1和efl3影响开花时间

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摘要

The circadian clock synchronizes internal and external stimuli to ensure numerous biological processes occur at the optimal time. EARLY FLOWERING 4 (ELF4) is a key evening-phased component of the circadian clock and essential for photoperiod-dependent flowering time regulation in Arabidopsis thaliana. There are four homologous ELF4-like (EFLI-EFL4) genes in the Arabidopsis genome but their functions are unknown. Protein sequence alignment and phylogenetic analysis showed that these four EFL proteins contained an evolutionarily conserved domain, DUF1313, of unknown function. To investigate the physical roles of these genes in Arabidopsis, we overexpressed the four homologous EFL genes in the elf4 mutant background. Under both long-day (LD) and short-day (SD) conditions, overexpression of EFL1 not only completely rescued the early flowering phenotype of the elf4 mutant, but also delayed flowering. Overexpression of EFL2, however, failed to rescue this phenotype and overexpression of EFL3 partially rescued the early flowering phenotype. The transcription levels of the key flowering time regulation genes CONSTANS (CO) and FLOWERING LOCUS T (FT) were significantly decreased in the EFLI- and EFL3-overexpressing transgenic lines in a dose-dependent manner, compared with the elf4 mutant. These results suggest that EFL1 and EFL3 are involved in flowering time regulation in Arabidopsis.
机译:昼夜节点时钟使内部和外部刺激同步以确保在最佳时间内发生许多生物过程。早期开花4(ELF4)是昼夜节律时钟的关键阶段分量,对拟南芥的光周期依赖性开花时间调节是必不可少的。拟南芥基因组中有四种同源的ELF4样(EFLI-EFL4)基因,但它们的功能是未知的。蛋白质序列对准和系统发育分析表明,这四种EFL蛋白包含了一种现有的保守结构域,DUF1313,未知功能。为了探讨这些基因在拟南芥中的身体作用,我们过表达了ELF4突变体背景中的四种同源EFL基因。在漫长的一天(LD)和短日(SD)条件下,EFL1的过度表达不仅完全拯救了ELF4突变体的早期开花表型,而且延迟开花。然而,EFL2的过度表达未能拯救这种表型和EFL3的过表达部分地拯救了早期开花表型。与ELF4突变体相比,efli-和EFL3过表达转基因系中,关键开花时间调节基因致苯(CO)和开花基因座T(FT)的转录水平在eFLI和EFL3过度表达转基因系中显着降低。这些结果表明EFL1和EFL3参与了拟南芥的开花时间调节。

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