College of Landscape Architecture, Changchun University, No.1 Weixinglu Changchun, Jilin, China.
College of Life Sciences, Tonghua Normal University, Tonghua, 950, Yucai Road, China.
Gene. 2024 Jun 30;913:148378. doi: 10.1016/j.gene.2024.148378. Epub 2024 Mar 13.
The gene encoding EARLY FLOWERING3 (ELF3) is necessary for photoperiodic flowering and the normal regulation of circadian rhythms. It provides important information at the cellular level to uncover the biological mechanisms that improve plant growth and development. ELF3 interactions with transcription factors such as BROTHER OF LUX ARRHYTHMO (BOA), LIGHT-REGULATED WD1 (LWD1), PHYTOCHROME-INTERACTING FACTOR 4 (PIF4), PHYTOCHROME-INTERACTING FACTOR 7 (PIF7), and LUX ARRHYTHMO (LUX) suggest a role in evening complex (EC) independent pathways, demanding further investigation to elucidate the EC-dependent versus EC-independent mechanisms. The ELF3 regulation of flowering time about photoperiod and temperature variations can also optimize crop cultivation across diverse latitudes. In this review paper, we summarize how ELF3's role in the circadian clock and light-responsive flowering control in crops offers substantial potential for scientific advancement and practical applications in biotechnology and agriculture. Despite its essential role in crop adaptation, very little is known in many important crops. Consequently, comprehensive and targeted research is essential for extrapolating ELF3-related insights from Arabidopsis to other crops, utilizing both computational and experimental methodologies. This research should prioritize investigations into ELF3's protein-protein interactions, post-translational modifications, and genomic targets to elucidate its contribution to accurate circadian clock regulation.
编码 EARLY FLOWERING3(ELF3)的基因是光周期开花和正常生物钟调节所必需的。它在细胞水平上提供了重要的信息,以揭示改善植物生长和发育的生物学机制。ELF3 与转录因子如 BROTHER OF LUX ARRHYTHMO(BOA)、LIGHT-REGULATED WD1(LWD1)、PHYTOCHROME-INTERACTING FACTOR 4(PIF4)、PHYTOCHROME-INTERACTING FACTOR 7(PIF7)和 LUX ARRHYTHMO(LUX)相互作用,表明其在 evening complex(EC)非依赖性途径中发挥作用,需要进一步研究来阐明 EC 依赖性和非 EC 依赖性机制。ELF3 对光周期和温度变化开花时间的调节也可以优化不同纬度的作物种植。在这篇综述论文中,我们总结了 ELF3 在作物生物钟和光响应开花控制中的作用如何为科学进步和生物技术及农业中的实际应用提供了巨大的潜力。尽管它在作物适应中起着至关重要的作用,但在许多重要作物中,人们对它的了解还很少。因此,综合和有针对性的研究对于从拟南芥推断 ELF3 相关的见解并将其应用于其他作物至关重要,同时利用计算和实验方法。这项研究应优先研究 ELF3 的蛋白质-蛋白质相互作用、翻译后修饰和基因组靶标,以阐明其对精确生物钟调节的贡献。