Usami Takeshi, Horiguchi Gorou, Yano Satoshi, Tsukaya Hirokazu
National Institute for Basic Biology, Nishigo-naka 38, Myodaiji-cho, Okazaki, Aichi, 444-8585 Japan.
Development. 2009 Mar;136(6):955-64. doi: 10.1242/dev.028613. Epub 2009 Feb 11.
Regulation of cell number and cell size is essential for controlling the shape and size of leaves. Here, we report a novel class of Arabidopsis thaliana mutants, more and smaller cells 1 (msc1)-msc3, which have increased cell number and decreased cell size in leaves. msc1 has a miR156-resistant mutation in the SQUAMOSA PROMOTER BINDING PROTEIN-LIKE 15 (SPL15) gene. msc2 and msc3 are new alleles of paused and squint mutants, respectively. All msc mutants showed accelerated heteroblasty, a phenomenon in which several morphological traits of leaves change along with phase change. Consistent with this finding, in the wild type, leaves at higher nodes (adult leaves) also have increased cell number and reduced cell size compared with those at lower nodes (juvenile leaves). These facts indicate that precocious acquisition of adult leaf characteristics in the msc mutants may cause alterations in the number and size of cells, and that heteroblasty plays an important role in the regulation of cell number and size. In agreement with this suggestion, such heteroblasty-associated changes in cell number and size are severely inhibited by the constitutive overexpression of miR156 and are promoted by the elevated expression of miR156-insensitive forms of SPL genes. By contrast, rdr6, sgs3, zip, arf3 and arf4 mutations, which affect progression of heteroblasty, had little or no effect on number or size of cells. These results suggest that cell number and size are mainly regulated by an SPL-dependent pathway rather than by a tasiR-ARF-dependent pathway.
细胞数量和细胞大小的调控对于控制叶片的形状和大小至关重要。在此,我们报道了一类新的拟南芥突变体,即更多更小细胞1(msc1)- msc3,它们的叶片中细胞数量增加而细胞大小减小。msc1在SQUAMOSA启动子结合蛋白样15(SPL15)基因中存在一个对miR156具有抗性的突变。msc2和msc3分别是paused和squint突变体的新等位基因。所有msc突变体均表现出加速的异时性,即叶片的几个形态特征随发育阶段变化而改变的现象。与这一发现一致,在野生型中,较高节位的叶片(成熟叶)与较低节位的叶片(幼叶)相比,细胞数量也增加而细胞大小减小。这些事实表明,msc突变体中成熟叶特征的早熟获得可能导致细胞数量和大小的改变,并且异时性在细胞数量和大小的调控中起重要作用。与这一推测一致,miR156的组成型过表达严重抑制了这种与异时性相关的细胞数量和大小变化,而miR156不敏感形式的SPL基因的表达升高则促进了这种变化。相比之下,影响异时性进程的rdr6、sgs3、zip、arf3和arf4突变对细胞数量或大小几乎没有影响。这些结果表明,细胞数量和大小主要由SPL依赖性途径调控,而非由tasiR - ARF依赖性途径调控。