Hibara Ken-Ichiro, Obara Mari, Hayashida Emi, Abe Masashi, Ishimaru Tsutomu, Satoh Hikaru, Itoh Jun-Ichi, Nagato Yasuo
Graduate School of Agricultural and Life Sciences, University of Tokyo, Tokyo 113-8657, Japan.
Dev Biol. 2009 Oct 15;334(2):345-54. doi: 10.1016/j.ydbio.2009.07.042. Epub 2009 Aug 6.
The adaxial-abaxial axis in leaf primordia is thought to be established first and is necessary for the expansion of the leaf lamina along the mediolateral axis. To understand axis information in leaf development, we isolated the adaxialized leaf1 (adl1) mutant in rice, which forms abaxially rolled leaves. adl1 leaves are covered with bulliform-like cells, which are normally distributed only on the adaxial surface. An adl1 double mutant with the adaxially snowy leaf mutant, which has albino cells that specifically appear in the abaxial mesophyll tissue, indicated that adl1 leaves show adaxialization in both epidermal and mesophyll tissues. The expression of HD-ZIPIII genes in adl1 mutant increased in mature leaves, but not in the young primordia or the SAM. This indicated that ADL1 may not be directly involved in determining initial leaf polarity, but rather is associated with the maintenance of axis information. ADL1 encodes a plant-specific calpain-like cysteine proteinase orthologous to maize DEFECTIVE KERNEL1. Furthermore, we identified intermediate and strong alleles of the adl1 mutant that generate shootless embryos and globular-arrested embryos with aleurone layer loss, respectively. We propose that ADL1 plays an important role in pattern formation of the leaf and embryo by promoting proper epidermal development.
叶原基中的近轴-远轴轴被认为是首先建立的,并且对于叶片沿中外侧轴的扩展是必需的。为了了解叶片发育中的轴信息,我们在水稻中分离出了近轴化叶1(adl1)突变体,该突变体形成远轴卷曲的叶片。adl1叶片覆盖着泡状细胞样细胞,这些细胞通常仅分布在近轴表面。adl1与近轴白化叶突变体的双突变体,该突变体在远轴叶肉组织中特异性出现白化细胞,表明adl1叶片在表皮和叶肉组织中均表现出近轴化。HD-ZIPIII基因在adl1突变体成熟叶片中的表达增加,但在幼叶原基或分生组织中没有增加。这表明ADL1可能不直接参与确定叶片的初始极性,而是与轴信息的维持有关。ADL1编码一种与玉米缺陷胚乳1直系同源的植物特异性钙蛋白酶样半胱氨酸蛋白酶。此外,我们鉴定了adl1突变体的中等和强等位基因,它们分别产生无芽胚和具有糊粉层缺失的球形停滞胚。我们提出ADL1通过促进适当的表皮发育在叶片和胚胎的模式形成中起重要作用。