Schultz E. A., Haughn G. W.
Biology Department, University of Saskatchewan, Saskatoon, Saskatchewan, S7N 0W0, Canada.
Plant Cell. 1991 Aug;3(8):771-781. doi: 10.1105/tpc.3.8.771.
Variation in plant shoot structure may be described as occurring through changes within a basic unit, the metamer. Using this terminology, the apical meristem of Arabidopsis produces three metameric types sequentially: type 1, rosette; type 2, coflorescence-bearing with bract; and type 3, flower-bearing without bract. We describe a mutant of Arabidopsis, Leafy, homozygous for a recessive allele of a nuclear gene LEAFY (LFY), that has an inflorescence composed only of type 2-like metamers. These data suggest that the LFY gene is required for the development of type 3 metamers and that the transition from type 2 to type 3 metamers is a developmental step distinct from that between vegetative and reproductive growth (type 1 to type 2 metamers). Results from double mutant analysis, showing that lfy-1 is epistatic to the floral organ homeotic gene ap2-6, are consistent with the hypothesis that a functional LFY gene is necessary for the expression of downstream genes controlling floral organ identity.
植物地上部结构的变异可描述为通过基本单位——分节发生变化。使用这一术语,拟南芥的顶端分生组织依次产生三种分节类型:1型,莲座叶;2型,具苞片的花序轴;3型,无苞片的花轴。我们描述了一种拟南芥突变体,叶状突变体,它是核基因叶状(LFY)隐性等位基因的纯合子,其花序仅由2型样分节组成。这些数据表明,LFY基因是3型分节发育所必需的,并且从2型到3型分节的转变是一个不同于营养生长和生殖生长(1型到2型分节)之间的发育步骤。双突变分析结果表明,lfy - 1对花器官同源异型基因ap2 - 6上位,这与功能性LFY基因是控制花器官特征的下游基因表达所必需的假设一致。