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首页> 外文期刊>Development >CONSTANS acts in the phloem to regulate a systemic signal that induces photoperiodic flowering of Arabidopsis.
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CONSTANS acts in the phloem to regulate a systemic signal that induces photoperiodic flowering of Arabidopsis.

机译:CONSTANS在韧皮部中起调节系统信号的作用,该信号诱导拟南芥的光周期开花。

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Flower development at the shoot apex is initiated in response to environmental cues. Day length is one of the most important of these and is perceived in the leaves. A systemic signal, called the floral stimulus or florigen, is then transmitted from the leaves through the phloem and induces floral development at the shoot apex. Genetic analysis in Arabidopsis identified a pathway of genes required for the initiation of flowering in response to day length. The nuclear zinc-finger protein CONSTANS (CO) plays a central role in this pathway, and in response to long days activates the transcription of FT, which encodes a RAF-kinase-inhibitor-like protein. We show using grafting approaches that CO acts non-cell autonomously to trigger flowering. Although CO is expressed widely, its misexpression from phloem-specific promoters, but not from meristem-specific promoters, is sufficient to induce early flowering and complement the co mutation. The mechanism by which CO triggers flowering from the phloem involves the cell-autonomous activation of FT expression. Genetic approaches indicate that CO activates flowering through both FT-dependent and FT-independent processes, whereas FT acts both in the phloem and the meristem to trigger flowering. We propose that, partly through the activation of FT, CO regulates the synthesis or transport of a systemic flowering signal, thereby positioning this signal within the established hierarchy of regulatory proteins that controls flowering.
机译:响应于环境提示,在茎尖开始开花。天长是其中最重要的一天,在树叶中可以感觉到。然后从叶片通过韧皮部传递一种称为花的刺激或荧光的系统性信号,并在枝条的顶端诱导花的发育。拟南芥中的遗传分析确定了响应天长而开始开花的基因途径。核锌指蛋白CONSTANS(CO)在此途径中起着核心作用,并响应长时日激活FT的转录,而FT则编码类似RAF激酶抑制剂的蛋白。我们显示使用嫁接方法,CO自主发挥非细胞作用来触发开花。尽管CO被广泛表达,但是它从韧皮部特异性启动子而不是分生组织特异性启动子的错误表达足以诱导早期开花并补充co突变。 CO触发韧皮部开花的机制涉及FT表达的细胞自主激活。遗传方法表明,CO通过FT依赖性和FT依赖性过程激活开花,而FT在韧皮部和分生组织中均起作用以触发开花。我们建议,部分地通过FT的激活,CO调节系统性开花信号的合成或运输,从而将该信号定位在控制开花的调节蛋白的已建立层次中。

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