Osmont Karen S, Sadeghian Nasim, Freeling Michael
Department of Plant and Microbial Biology, University of California, Berkeley, CA 94720, USA.
Dev Biol. 2006 Jul 1;295(1):1-12. doi: 10.1016/j.ydbio.2005.11.012. Epub 2006 May 8.
The maize leaf develops in a simple, stereotypical manner; therefore, it serves as a basic model to understand the processes involved in forming developmental boundaries. extended auricle1 (eta1) is a pleiotropic maize mutant that affects proximodistal leaf development. Mutant eta1 individuals display basipetal displacement of the blade/sheath boundary and the boundary between auricle and blade is not clearly delineated, leading to an undulating auricle. SEM analysis shows that eta1 is required for proper placement of the blade/sheath boundary on the adaxial leaf surface. Examination of vascular and cellular organization indicates that eta1 affects not only placement of the blade/sheath boundary, but also differentiation of cell types within the blade/sheath boundary. Genetic mosaic analysis was used to determine the effect of eta1 mutant tissue on wild-type leaf development and to resolve the site and timing of the Eta1+ gene product. Interestingly, sectors of eta1 tissue affect the placement of the blade/sheath boundary even in wild-type tissue. These results suggest that a two-way signaling pathway may be involved in the positioning of the blade/sheath boundary. Based on these data, we propose a model for Eta1+ function in the maize leaf.
玉米叶片以简单、固定的方式发育;因此,它是理解形成发育边界所涉及过程的基本模型。延长叶耳1(eta1)是一种多效性玉米突变体,影响叶片的近远轴发育。突变体eta1个体的叶片/叶鞘边界向基部移位,叶耳与叶片之间的边界不清晰,导致叶耳呈波浪状。扫描电子显微镜分析表明,eta1对于叶片/叶鞘边界在叶片近轴表面的正确定位是必需的。对维管束和细胞组织的检查表明,eta1不仅影响叶片/叶鞘边界的定位,还影响叶片/叶鞘边界内细胞类型的分化。遗传镶嵌分析用于确定eta1突变组织对野生型叶片发育的影响,并确定Eta1 +基因产物的作用位点和时间。有趣的是,即使在野生型组织中,eta1组织区域也会影响叶片/叶鞘边界的定位。这些结果表明,双向信号通路可能参与了叶片/叶鞘边界的定位。基于这些数据,我们提出了一个关于Eta1 +在玉米叶片中功能的模型。