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首页> 外文期刊>Molecules and Cells >The floral repressor BROTHER OF FT AND TFL1 (BFT) modulates flowering initiation under high salinity in Arabidopsis
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The floral repressor BROTHER OF FT AND TFL1 (BFT) modulates flowering initiation under high salinity in Arabidopsis

机译:FT和TFL1的花卉阻抑剂BROTHER(BFT)调节拟南芥在高盐度下的开花启动

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Floral transition is coordinately regulated by both endogenous and exogenous cues to ensure reproductive success under fluctuating environmental conditions. Abiotic stress conditions, including drought and high salinity, also have considerable influence on this developmental process. However, the signaling components and molecular mechanisms underlying the regulation of floral transition by environmental factors have not yet been defined. In this work, we show that the Arabidopsis BROTHER OF FT AND TFL1 (BFT) gene, which encodes a member of the FLOWERING LOCUS T (FT)/TERMINAL FLOWER 1 (TFL1) family, regulates floral transition under conditions of high salinity. The BFT gene was transcriptionally induced by high salinity in an abscisic acid (ABA)-dependent manner. Transgenic plants overexpressing the BFT gene (35S:BFT) and BFT-deficient mutant (bft-2) plants were phenotypically indistinguishable from Col-0 plants in seed germination and seedling growth under high salinity. In contrast, although the floral transition was delayed significantly in Col-0 plants under high salinity, that of the bft-2 mutant was not affected by high salinity. We also observed that expression of the APETALA1 (AP1) gene was suppressed to a lesser degree in the bft-2 mutant than in Col-0 plants. Taken together, our observations suggest that BFT mediates salt stress-responsive flowering, providing an adaptive strategy that ensures reproductive success under unfavorable stress conditions.
机译:内源性和外源性信号均协调地调节花期,以确保在动荡的环境条件下繁殖成功。非生物胁迫条件,包括干旱和高盐度,也对该发育过程有相当大的影响。然而,尚未确定由环境因素调节花序转变的信号传导成分和分子机制。在这项工作中,我们表明拟南芥FT和TFL1(BFT)基因的兄弟姐妹,它编码FOCHERING LOCUS T(FT)/ TERMINAL FLOWER 1(TFL1)家族的成员,在高盐度条件下调节花期。高盐度以脱落酸(ABA)依赖的方式转录诱导BFT基因。在高盐度下,种子发芽和幼苗生长过程中,过表达BFT基因(35S:BFT)和BFT缺陷型突变体(bft-2)的转基因植物与Col-0植物在表型上没有区别。相反,尽管在高盐度下的Col-0植物中花期明显延迟,但bft-2突变体的花期不受高盐度影响。我们还观察到在bft-2突变体中,APETALA1(AP1)基因的表达被抑制的程度要比Col-0植物中的抑制程度低。综上所述,我们的观察结果表明BFT介导盐胁迫响应性开花,提供了一种适应性策略,可确保在不利的胁迫条件下繁殖成功。

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