Yang C H, Chen L J, Sung Z R
Department of Plant Biology, University of California at Berkeley 94720, USA.
Dev Biol. 1995 Jun;169(2):421-35. doi: 10.1006/dbio.1995.1158.
To investigate the genetic mechanism regulating Arabidopsis shoot maturation and development, we characterized eight emf mutants that bypassed the vegetative phase of the life cycle. Genetic complementation studies identified two EMF loci; both mapped to chromosome five. Double mutant analysis showed that the early- and late-flowering mutants, co, fb, elf1, elf2, and elf3, could not rescue vegetative development in the emf mutants, confirming the need for both EMF gene activities for rosette development. A series of phenotypes involving successive loss of reproductive organs was also observed in emf single mutants, in emf1-1/emf1-2 transheterozygotes, and in emf1 emf2 double mutants, suggesting that the EMF genes not only specify the rosette (vegetative) but also are involved in inflorescence and flower (reproductive) development. Phenotypic analysis of double mutants between emf and tfl1, lfy, and ag indicated interactions between EMF and genes regulating inflorescence meristem development and floral organ identity. A model depicting the role of the EMF genes in regulating shoot maturation and their interaction with genes that affect phase transitions is presented.
为了研究调控拟南芥茎成熟和发育的遗传机制,我们对八个绕过生命周期营养阶段的emf突变体进行了表征。遗传互补研究确定了两个EMF基因座;它们都定位在第五条染色体上。双突变分析表明,早花和晚花突变体co、fb、elf1、elf2和elf3无法挽救emf突变体中的营养发育,这证实了莲座叶发育需要两种EMF基因活性。在emf单突变体、emf1-1/emf1-2反式杂合子以及emf1 emf2双突变体中,还观察到了一系列涉及生殖器官连续丧失的表型,这表明EMF基因不仅决定莲座叶(营养),还参与花序和花(生殖)的发育。对emf与tfl1、lfy和ag之间双突变体的表型分析表明,EMF与调控花序分生组织发育和花器官特征的基因之间存在相互作用。本文提出了一个模型,描述了EMF基因在调控茎成熟中的作用及其与影响阶段转变的基因之间的相互作用