Balanzà Vicente, Martínez-Fernández Irene, Ferrándiz Cristina
Instituto de Biología Molecular y Celular de Plantas, Consejo Superior de Investigaciones Científicas-Universidad Politécnica de Valencia, Avenida de los Naranjos s/n, 46022 Valencia, Spain.
J Exp Bot. 2014 Mar;65(4):1193-203. doi: 10.1093/jxb/ert482. Epub 2014 Jan 24.
The role in flowering time of the MADS-box transcription factor fruitfulL (FUL) has been proposed in many works. FUL has been connected to several flowering pathways as a target of the photoperiod, ambient temperature, and age pathways and it is has been shown to promote flowering in a partially redundant manner with suppressor of overexpression of constans 1 (SOC1). However, the position of FUL in these genetic networks, as well as the functional output of FUL activity during floral transition, remains unclear. In this work, a genetic approach has been undertaken to understand better the functional hierarchies involving FUL and other MADS-box factors with well established roles as floral integrators such as SOC1, short vegetative phase (svp) or flowering locus C (FLC). Our results suggest a prominent role of FUL in promoting reproductive transition when photoinductive signalling is suppressed by short-day conditions or by high levels of FLC expression, as in non-vernalized winter ecotypes. A model is proposed where the sequential formation of FUL-SVP and FUL-SOC1 heterodimers may mediate the vegetative and meristem identity transitions, counteracting the repressive effect of FLC and SVP on flowering.
许多研究都提出了MADS盒转录因子硕果累累(FUL)在开花时间方面的作用。FUL作为光周期、环境温度和年龄途径的靶点,已与多种开花途径相关联,并且已证明它与CONSTANS 1过表达抑制因子(SOC1)以部分冗余的方式促进开花。然而,FUL在这些遗传网络中的位置,以及FUL活性在花期转变过程中的功能输出仍不清楚。在这项研究中,我们采用了一种遗传学方法,以更好地理解涉及FUL和其他MADS盒因子的功能层次结构,这些因子作为花整合因子,如SOC1、短营养期(svp)或开花位点C(FLC),具有明确的作用。我们的结果表明,当光诱导信号被短日照条件或高水平的FLC表达抑制时,FUL在促进生殖转变中起重要作用,如在未春化的冬季生态型中。我们提出了一个模型,其中FUL-SVP和FUL-SOC1异二聚体的顺序形成可能介导营养生长和分生组织特性的转变,抵消FLC和SVP对开花的抑制作用。