Fujikura Ushio, Horiguchi Gorou, Tsukaya Hirokazu
National Institute for Basic Biology, Myodaiji-cho Nisigo Naka 38, Okazaki, Aichi, Japan.
Plant Cell Physiol. 2007 Feb;48(2):278-86. doi: 10.1093/pcp/pcm002. Epub 2007 Jan 6.
Leaf development relies on cell proliferation, post-mitotic cell expansion and the coordination of these processes. In several Arabidopsis thaliana mutants impaired in cell proliferation, such as angustifolia3 (an3), leaf cells are larger than normal at their maturity. This phenomenon, which we call compensated cell enlargement, suggests the presence of such coordination in leaf development. To dissect genetically the cell expansion system(s) underlying this compensation seen in the an3 mutant, we isolated and utilized 10 extra-small sisters (xs) mutant lines that show decreased cell size but normal cell numbers in leaves. In the xs single mutants, the palisade cell sizes in mature leaves are about 20-50% smaller than those of wild-type cells. Phenotypes of the palisade cell sizes in all combinations of xs an3 double mutants fall into three classes. In the first class, the compensated cell enlargement was significantly suppressed. Conversely, in the second class, the defective cell expansion conferred by the xs mutations was significantly suppressed by the an3 mutation. The residual xs mutations had effects additive to those of the an3 mutation on cell expansion. The endopolyploidy levels in the first class of mutants were decreased, unaffected or increased, as compared with those in wild-type, suggesting that the abnormally enhanced cell expansion observed in an3 could be mediated, at least in part, by ploidy-independent mechanisms. Altogether, these results clearly showed that a defect in cell proliferation in leaf primordia enhances a part of the network that regulates cell expansion, which is required for normal leaf expansion.
叶片发育依赖于细胞增殖、有丝分裂后细胞扩展以及这些过程的协调。在一些细胞增殖受损的拟南芥突变体中,例如狭叶3(an3),叶片细胞在成熟时比正常细胞大。我们将这种现象称为补偿性细胞增大,这表明叶片发育中存在这种协调性。为了从遗传学角度剖析an3突变体中这种补偿现象背后的细胞扩展系统,我们分离并利用了10个超小叶(xs)突变体系,这些突变体在叶片中细胞大小减小但细胞数量正常。在xs单突变体中,成熟叶片中的栅栏细胞大小比野生型细胞小约20 - 50%。xs an3双突变体所有组合中栅栏细胞大小的表型分为三类。在第一类中,补偿性细胞增大被显著抑制。相反,在第二类中,xs突变导致的细胞扩展缺陷被an3突变显著抑制。剩余的xs突变对细胞扩展的影响与an3突变的影响呈累加效应。与野生型相比,第一类突变体中的内多倍体水平降低、未受影响或升高,这表明在an3中观察到的异常增强的细胞扩展可能至少部分地由不依赖于倍性的机制介导。总之,这些结果清楚地表明,叶原基中细胞增殖的缺陷增强了调节细胞扩展的部分网络,而这是正常叶片扩展所必需的。