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Major flowering time gene FLOWERING LOCUS C regulates seed germination in Arabidopsis thaliana

机译:主要开花时间基因FLOWERING LOCUS C调节拟南芥种子的萌发

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摘要

FLOWERING LOCUS C (FLC) is a major regulator of flowering responses to seasonal environmental factors. Here, we document that FLC also regulates another major life-history transition-seed germination, and that natural variation at the FLC locus and in FLC expression is associated with natural variation in temperature-dependent germination. FLC-mediated germination acts through additional genes in the flowering pathway (FT, SOC1, and AP1) before involving the abscisic acid catabolic pathway (via CYP707A2) and gibberellins biosynthetic pathway (via GA20ox1) in seeds. Also, FLC regulation of germination is largely maternally controlled, with FLC peaking and FT, SOC1, and AP1 levels declining at late stages of seed maturation. High FLC expression during seed maturation is associated with altered expression of hormonal genes (CYP707A2 and GA20ox1) in germinating seeds, indicating that gene expression before the physiological independence of seeds can influence gene expression well after any physical connection between maternal plants and seeds exists. The major role of FLC in temperature-dependent germination documented here reveals a much broader adaptive significance of natural variation in FLC. Therefore, pleiotropy between these major life stages likely influences patterns of natural selection on this important gene, making FLC a promising case for examining how pleiotropy influences adaptive evolution.
机译:花朵位置C(FLC)是开花对季节性环境因素的主要调节剂。在这里,我们证明FLC还调节着另一种主要的生活史过渡种子发芽,并且FLC基因座和FLC表达中的自然变化与温度依赖性发芽中的自然变化相关。 FLC介导的发芽通过开花途径中的其他基因(FT,SOC1和AP1)起作用,然后参与种子中的脱落酸分解代谢途径(通过CYP707A2)和赤霉素生物合成途径(通过GA20ox1)。同样,FLC对发芽的调控很大程度上受母体控制,在种子成熟的后期,FLC达到峰值,而FT,SOC1和AP1含量下降。种子成熟过程中 FLC 的高表达与发芽种子中激素基因( CYP707A2 GA20ox1 )表达的改变有关,表明该基因在种子萌发之前表达在母本植物与种子之间存在任何物理联系之后,种子的生理独立性可以很好地影响基因表达。此处记载的 FLC 在依赖温度的萌发中的主要作用揭示了 FLC 中自然变异的广泛适应性意义。因此,这些主要生命阶段之间的多效性可能会影响该重要基因的自然选择方式,这使得 FLC 成为检验多效性如何影响适应性进化的有前途的案例。

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