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首页> 外文期刊>Journal of Experimental Botany >Generation and analysis of a complete mutant set for the Arabidopsis FT/TFL1 family shows specific effects on thermo-sensitive flowering regulation
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Generation and analysis of a complete mutant set for the Arabidopsis FT/TFL1 family shows specific effects on thermo-sensitive flowering regulation

机译:拟南芥FT / TFL1家族完整突变体的产生和分析显示对热敏开花调节有特定作用

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The FLOWERING LOCUS T (FT)/TERMINAL FLOWER 1 (TFL1) family proteins play an important role in the regulation of flowering time. In the Arabidopsis thaliana genome, there are six genes in the FT/TFL1 family. To determine how these FT/TFL1 family genes contribute to the regulation of flowering time, this study generated a comprehensive set of mutants (sixty-three multiple mutants in all combinations) of the FT/TFL1 family genes and analysed their flowering times at 23 and 16 degrees C under long-day conditions. The analysis confirmed that FT and TFL1 are major determinants of flowering time under long-day conditions. At 23 degrees C, ft-10 tsf-1 mft-2 showed the latest flowering, whereas tfl1-20 atc-2 bft-2 showed the earliest flowering. Flowering occurred in the sextuple mutants. Introduction of tsf-1 led to reduced sensitivity to ambient temperature change. Introduction of tfl1-20 caused a stronger effect in accelerating flowering time at 16 degrees C than at 23 degrees C. Overexpression of miR156 did not block flowering of sextuple mutants, suggesting that there is a pathway to induce flowering independent of the FT/TFL1 pathway and miR156 pathway. This study proposes that this mutant population will be useful in further investigation of the functions of the FT/TFL1 family genes in plant development.
机译:FLOWERING LOCUS T(FT)/ TERMINAL FLOWER 1(TFL1)家族蛋白在调节开花时间中起重要作用。在拟南芥基因组中,FT / TFL1家族有六个基因。为了确定这些FT / TFL1家族基因如何影响开花时间的调节,本研究生成了FT / TFL1家族基因的一整套突变体(所有组合中有63个多个突变体),并分析了它们在23和在长期条件下为16摄氏度。分析证实,FT和TFL1是长日照条件下开花时间的主要决定因素。在23摄氏度时,ft-10 tsf-1 mft-2显示最新开花,而tfl1-20 atc-2 bft-2显示最早开花。在六倍体突变体中开花。 tsf-1的引入导致对环境温度变化的敏感性降低。 tfl1-20的引入在16°C时比23°C时在加速开花时间上具有更强的作用。miR156的过表达并未阻止六倍体突变体的开花,这表明存在独立于FT / TFL1途径的诱导开花的途径和miR156途径。这项研究表明,该突变种群将有助于进一步研究FT / TFL1家族基因在植物发育中的功能。

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