Ori Naomi, Cohen Aya Refael, Etzioni Adi, Brand Arnon, Yanai Osnat, Shleizer Sharona, Menda Naama, Amsellem Ziva, Efroni Idan, Pekker Irena, Alvarez John Paul, Blum Eyal, Zamir Dani, Eshed Yuval
The Robert H. Smith Institute of Plant Sciences and Genetics in Agriculture, Hebrew University of Jerusalem, P.O. Box 12, Rehovot 76100, Israel.
Nat Genet. 2007 Jun;39(6):787-91. doi: 10.1038/ng2036. Epub 2007 May 7.
Plant leaves show pronounced plasticity of size and form. In the classical, partially dominant mutation Lanceolate (La), the large compound leaves of tomato (Solanum lycopersicum) are converted into small simple ones. We show that LA encodes a transcription factor from the TCP family containing an miR319-binding site. Five independent La isolates are gain-of-function alleles that result from point mutations within the miR319-binding site and confer partial resistance of the La transcripts to microRNA (miRNA)-directed inhibition. The reduced sensitivity to miRNA regulation leads to elevated LA expression in very young La leaf primordia and to precocious differentiation of leaf margins. In contrast, downregulation of several LA-like genes using ectopic expression of miR319 resulted in larger leaflets and continuous growth of leaf margins. Our results imply that regulation of LA by miR319 defines a flexible window of morphogenetic competence along the developing leaf margin that is required for leaf elaboration.
植物叶片在大小和形态上表现出显著的可塑性。在经典的部分显性突变体“披针形”(La)中,番茄(Solanum lycopersicum)的大型复叶会转变为小型单叶。我们发现,LA编码一个来自TCP家族的转录因子,该转录因子含有一个miR319结合位点。五个独立的La分离株是功能获得性等位基因,它们由miR319结合位点内的点突变产生,使La转录本对微RNA(miRNA)介导的抑制具有部分抗性。对miRNA调控的敏感性降低导致在非常幼嫩的La叶原基中LA表达升高,并导致叶缘早熟分化。相反,利用miR319的异位表达下调几个LA样基因,导致小叶更大且叶缘持续生长。我们的结果表明,miR319对LA的调控定义了一个沿着发育中的叶缘的形态发生能力的灵活窗口,这是叶片细化所必需的。