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LUX ARRHYTHMO与ELF3a和ELF4a相互作用以协调水稻的营养生长和光周期开花。

LUX ARRHYTHMO Interacts With ELF3a and ELF4a to Coordinate Vegetative Growth and Photoperiodic Flowering in Rice.

作者信息

Cai Zhengzheng, Zhang Yudan, Tang Weiqi, Chen Xuequn, Lin Chenchen, Liu Yang, Ye Yanfang, Wu Weiren, Duan Yuanlin

机构信息

Key Laboratory of Genetics, Breeding and Multiple Utilization of Crops, Ministry of Education, Fujian Agriculture and Forestry University, Fuzhou, China.

Fujian Key Laboratory of Crop Breeding by Design, Fujian Agriculture and Forestry University, Fuzhou, China.

出版信息

Front Plant Sci. 2022 Mar 17;13:853042. doi: 10.3389/fpls.2022.853042. eCollection 2022.

Abstract

The evening complex (EC) plays a critical role in photoperiod flowering in . Nevertheless, the underlying functions of individual components and coordinate regulation mechanism of EC genes in rice flowering remain to be elucidated. Here, we characterized the critical role of () in photoperiod perception and coordinating vegetative growth and flowering in rice. Non-functional alleles of extremely extended vegetative phase, leading to photoperiod-insensitive late flowering and great increase of grain yield. displayed an obvious diurnal rhythm expression with the peak at dusk and promoted rice flowering coordinating the expression of genes associated with the circadian clock and the output integrators of photoperiodic flowering. OsLUX combined with OsELF4a and OsELF3a or OsELF3b to form two ECs, of which the OsLUX-OsELF3a-OsELF4a was likely the dominant promoter for photoperiodic flowering. In addition, was also essential for promoting rice flowering. Unlike , loss displayed a marginal influence under short-day (SD) condition, but markedly delayed flowering time under long-day (LD) condition. These results suggest that rice EC genes share the function of promoting flowering. This is agreement with the orthologs of SD plant, but opposite to the counterparts of LD species. Taken together, rice EC genes display similar but not identical function in photoperiodic flowering, probably through regulating gene expression cooperative and independent. These findings facilitate our understanding of photoperiodic flowering in plants, especially the SD crops.

摘要

傍晚复合体(EC)在[植物名称]的光周期开花中起着关键作用。然而,水稻开花过程中EC基因各个组分的潜在功能及其协同调控机制仍有待阐明。在此,我们鉴定了[基因名称]在水稻光周期感知以及协调营养生长与开花方面的关键作用。[基因名称]的无功能等位基因导致营长期极度延长,从而产生光周期不敏感的晚花现象,并使谷物产量大幅增加。[基因名称]表现出明显的昼夜节律表达,在黄昏时达到峰值,并通过协调与生物钟及光周期开花输出整合因子相关基因的表达来促进水稻开花。OsLUX与OsELF4a和OsELF3a或OsELF3b结合形成两个傍晚复合体,其中OsLUX-OsELF3a-OsELF4a可能是光周期开花的主要促进因子。此外,[基因名称]对促进水稻开花也至关重要。与[基因名称]不同,[另一基因名称]功能缺失在短日(SD)条件下对开花时间影响较小,但在长日(LD)条件下显著延迟开花时间。这些结果表明水稻EC基因具有共同的促进开花功能。这与短日植物的直系同源基因一致,但与长日植物的对应基因相反。综上所述,水稻EC基因在光周期开花中表现出相似但不完全相同的功能,可能是通过协同和独立调控基因表达实现的。这些发现有助于我们理解植物尤其是短日作物的光周期开花机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b531/8993510/6a41199b2bcb/fpls-13-853042-g001.jpg

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