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FT5b 正向调控光周期开花,提高大豆的地理适应性。

The FLOWERING LOCUS T 5b positively regulates photoperiodic flowering and improves the geographical adaptation of soybean.

机构信息

National Center for Transgenic Research in Plants, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, China.

Ministry of Agriculture Key Laboratory of Soybean Biology (Beijing), Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

Plant Cell Environ. 2024 Jan;47(1):246-258. doi: 10.1111/pce.14739. Epub 2023 Oct 13.

DOI:10.1111/pce.14739
PMID:37830787
Abstract

Plants can sense the photoperiod to flower at the right time. As a sensitive short-day crop, soybean (Glycine max) flowering varies greatly depending on photoperiods, affecting yields. Adaptive changes in soybeans rely on variable genetic loci such as E1 and FLOWERING LOCUS T orthologs. However, the precise coordination and control of these molecular components remain largely unknown. In this study, we demonstrate that GmFT5b functions as a crucial factor for soybean flowering. Overexpressed or mutated GmFT5b resulted in significantly early or later flowering, altering expression profiles for several downstream flowering-related genes under a long-day photoperiod. GmFT5b interacts with the transcription factor GmFDL15, suggesting transcriptional tuning of flowering time regulatory genes via the GmFT5b/GmFDL15 complex. Notably, GmFT5a partially compensated for GmFT5b function, as ft5a ft5b double mutants exhibited an enhanced late-flowering phenotype. Association mapping revealed that GmFT5b was associated with flowering time, maturity, and geographical distribution of soybean accessions, all associated with the E1 locus. Therefore, GmFT5b is a valuable target for enhancing regional adaptability. Natural variants or multiple mutants in this region can be utilized to generate optimized soybean varieties with precise flowering times.

摘要

植物可以感知光周期,以便在适当的时间开花。大豆是一种对光周期敏感的短日照作物,其开花时间会因光周期的不同而有很大的变化,从而影响产量。大豆的适应性变化依赖于可变的遗传基因座,如 E1 和 FLOWERING LOCUS T 同源物。然而,这些分子成分的精确协调和控制在很大程度上仍然未知。在这项研究中,我们证明了 GmFT5b 是大豆开花的关键因素。过表达或突变 GmFT5b 导致大豆开花时间明显提前或延迟,改变了长日照下几个下游开花相关基因的表达谱。GmFT5b 与转录因子 GmFDL15 相互作用,表明通过 GmFT5b/GmFDL15 复合物对开花时间调控基因进行转录调节。值得注意的是,GmFT5a 部分补偿了 GmFT5b 的功能,因为 ft5a ft5b 双突变体表现出增强的晚花表型。关联图谱分析表明,GmFT5b 与大豆品系的开花时间、成熟度和地理分布有关,这些都与 E1 基因座有关。因此,GmFT5b 是提高区域适应性的有价值的目标。该区域的自然变异或多个突变可以用来生成具有精确开花时间的优化大豆品种。

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