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叶状基因,一种调控拟南芥花序发育的同源异型基因。

LEAFY, a Homeotic Gene That Regulates Inflorescence Development in Arabidopsis.

作者信息

Schultz E. A., Haughn G. W.

机构信息

Biology Department, University of Saskatchewan, Saskatoon, Saskatchewan, S7N 0W0, Canada.

出版信息

Plant Cell. 1991 Aug;3(8):771-781. doi: 10.1105/tpc.3.8.771.

Abstract

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.

摘要

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。

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