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拟南芥花抑制因子 BFT 通过与 FT 在高盐条件下竞争 FD 结合来延迟开花。

The Arabidopsis floral repressor BFT delays flowering by competing with FT for FD binding under high salinity.

机构信息

Department of Chemistry, Seoul National University, Seoul 151-742, Korea.

出版信息

Mol Plant. 2014 Feb;7(2):377-87. doi: 10.1093/mp/sst114. Epub 2013 Aug 10.

Abstract

Soil salinity is one of the most serious agricultural problems that significantly reduce crop yields in the arid and semi-arid regions. It influences various phases of plant growth and developmental processes, such as seed germination, leaf and stem growth, and reproductive propagation. Salt stress delays the onset of flowering in many plant species. We have previously reported that the Arabidopsis BROTHER OF FT AND TFL1 (BFT) acts as a floral repressor under salt stress. However, the molecular mechanisms underlying the BFT function in the salt regulation of flowering induction is unknown. In this work, we found that BFT delays flowering under high salinity by competing with FLOWERING LOCUS T (FT) for binding to the FD transcription factor. The flowering time of FD-deficient fd-2 mutant was insensitive to high salinity. BFT interacts with FD in the nucleus via the C-terminal domain of FD, which is also required for the interaction of FD with FT, and interferes with the FT-FD interaction. These observations indicate that BFT constitutes a distinct salt stress signaling pathway that modulates the function of the FT-FD module and possibly provides an adaptation strategy that fine-tunes photoperiodic flowering under high salinity.

摘要

土壤盐度是干旱和半干旱地区最严重的农业问题之一,它会显著降低作物产量。它影响植物生长和发育过程的各个阶段,如种子萌发、叶片和茎的生长以及生殖繁殖。盐胁迫会延迟许多植物物种的开花时间。我们之前曾报道过,拟南芥 BROTHER OF FT AND TFL1(BFT)在盐胁迫下作为花的阻遏物。然而,BFT 在盐调控开花诱导中的功能的分子机制尚不清楚。在这项工作中,我们发现 BFT 通过与 FD 转录因子竞争结合来延迟高盐下的开花。缺乏 FD 的 fd-2 突变体的开花时间对高盐不敏感。BFT 通过 FD 的 C 末端结构域与 FD 在核内相互作用,这也是 FD 与 FT 相互作用所必需的,并干扰了 FT-FD 相互作用。这些观察表明,BFT 构成了一个独特的盐胁迫信号通路,调节 FT-FD 模块的功能,并可能提供一种适应策略,在高盐度下微调光周期开花。

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