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FLD与影响不同发育阶段转变的基因相互作用,以调控拟南芥地上部发育。

FLD interacts with genes that affect different developmental phase transitions to regulate Arabidopsis shoot development.

作者信息

Chou M L, Yang C H

机构信息

Graduate Institute of Agricultural Biotechnology, National Chung Hsing University, Taichung, Taiwan, R.O.C.

出版信息

Plant J. 1998 Jul;15(2):231-42. doi: 10.1046/j.1365-313x.1998.00204.x.

Abstract

A new fld mutant allele, fld-2, which significantly delayed flowering, was isolated and characterized in Arabidopsis thaliana. Even under long-day conditions after more than 100 days in the greenhouse, the majority of fld-2 mutant plants had not bolted. In addition, mutant inflorescences produced more than 10 co-florescences that were subtended by a high number of rosette-like leaves before giving rise to flowers. The late-flowering phenotype of the fld-2 mutation could be partially overcome by both vernalization and GA treatment but it was not influenced by 5-azaC treatment. Phenotypic analyses of double mutants indicated that fld-2 is epistatic to early flowering mutants elf1, elf2 and elf3. In addition, fld-2 could enhance vegetative characteristics in embryonic flower 1 (emf1) mutants by causing many small sessile leaves in fld-2 emf1 double mutants. The relief of the terminal flower 1 (tfl1) mutant phenotype in fld-2 tfl1 double mutants, and the enhancement of leafy (lfy) and apetala1 (ap1) mutant phenotypes in fld-2 lfy and fld-2 ap1 double mutants, suggest that FLD is also likely to be involved in the floral transition. Our results strongly suggest that the FLD gene plays a key role in regulating the reproductive competence of the shoot and results in different developmental phase transitions in Arabidopsis.

摘要

在拟南芥中分离并鉴定了一个新的fld突变等位基因fld-2,该等位基因显著延迟开花。即使在温室中超过100天的长日照条件下,大多数fld-2突变植株仍未抽薹。此外,突变花序在开花前产生了10多个共花序,这些共花序被大量莲座状叶片所托。fld-2突变的晚花表型可通过春化处理和GA处理部分克服,但不受5-azaC处理影响。双突变体的表型分析表明,fld-2对早花突变体elf1、elf2和elf3上位。此外,fld-2可通过在fld-2 emf1双突变体中产生许多小的无柄叶来增强胚胎花1(emf1)突变体的营养特性。fld-2 tfl1双突变体中顶花1(tfl1)突变体表型的缓解,以及fld-2 lfy和fld-2 ap1双突变体中叶状(lfy)和花瓣1(ap1)突变体表型的增强,表明FLD也可能参与花转变。我们的结果强烈表明,FLD基因在调节茎的生殖能力中起关键作用,并导致拟南芥中不同的发育阶段转变。

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