Chou M L, Haung M D, Yang C H
Graduate Institute of Agricultural Biotechnology, National Chung Hsing University, Taichung, Taiwan 40227, ROC.
Plant Cell Physiol. 2001 May;42(5):499-507. doi: 10.1093/pcp/pce062.
To investigate the mechanisms regulating the initiation of floral development in Arabidopsis, a construct containing beta-glucuronidase (GUS) gene driven by APETALA1 promoter (AP1::GUS) was introduced into emf fwa and emf ft double mutants. GUS activity was strongly detected on shoot meristem of emf1-1 single mutants harboring AP1::GUS construct just 5 d after germination. By contrast, GUS activity was undetectable on emf1-1 fwa-1, emf1-1 ft-1, emf2-1 fwa-1, emf2-3 fwa-1 and emf2-3 ft-1 double mutants harboring AP1::GUS construct 10 d after germination. GUS activity was only weakly detected on the apical meristem of 20-day-old emf1-1 fwa-1 and emf2-1 fwa-1 seedlings. During this time, only sessile leaves were produced. Further analysis indicated that AP1 was strongly expressed in 10-day-old emf1-1 and emf2-1 single mutants. Its expression was significantly reduced in all emf1-1 or emf2-1 late-flowering double mutants tested. Similar to AP1, the expression of LEAFY (LFY) was also high in emf1-1 and emf2-1 single mutants and reduced in emf1-1 or emf2-1 late-flowering double mutants. Our results indicate that the precocious expression of AP1 and LFY is dependent not only on the low EMF and FWA activities but also on the expression of most of the late-flowering genes such as FT, FCA, FE, CO and GI. These data also reveal that most late-flowering genes may function downstream of EMF or in pathways distinct from EMF to activate genes specified floral meristem identity during shoot maturation in Arabidopsis.
为了研究调控拟南芥花发育起始的机制,将一个含有由APETALA1启动子驱动的β-葡萄糖醛酸酶(GUS)基因的构建体(AP1::GUS)导入emf fwa和emf ft双突变体中。在萌发仅5天后,在携带AP1::GUS构建体的emf1-1单突变体的茎尖分生组织中强烈检测到GUS活性。相比之下,在携带AP1::GUS构建体的emf1-1 fwa-1、emf1-1 ft-1、emf2-1 fwa-1、emf2-3 fwa-1和emf2-3 ft-1双突变体萌发10天后未检测到GUS活性。在20日龄的emf1-1 fwa-1和emf2-1 fwa-1幼苗的顶端分生组织中仅微弱检测到GUS活性。在此期间,仅产生无柄叶。进一步分析表明,AP1在10日龄的emf1-1和emf2-1单突变体中强烈表达。在所有测试的emf1-1或emf2-1晚花双突变体中其表达显著降低。与AP1相似,LEAFY(LFY)在emf1-1和emf2-1单突变体中的表达也很高,而在emf1-1或emf2-1晚花双突变体中降低。我们的结果表明,AP1和LFY的早熟表达不仅依赖于低EMF和FWA活性,还依赖于大多数晚花基因如FT、FCA、FE、CO和GI的表达。这些数据还揭示,大多数晚花基因可能在EMF下游起作用或在与EMF不同的途径中起作用,以在拟南芥茎成熟过程中激活指定花分生组织身份的基因。