Flanagan C A, Hu Y, Ma H
Cold Spring Harbor Laboratory, NY 11724-2212, USA.
Plant J. 1996 Aug;10(2):343-53. doi: 10.1046/j.1365-313x.1996.10020343.x.
Several members of the MADS-box gene family have been shown to be important regulators of flower development, controlling such well-studied early events as the formation of the floral meristem and the specification of floral organ identity. Other floral-specific MADS-box genes, of as yet unknown function, have been isolated by homology and are proposed to be part of a regulatory hierarchy controlling flower development. Some of these genes might regulate later aspects of flower development, such as development of individual floral organs, which is less well studied at the molecular level. This paper presents a detailed analysis of the expression pattern of one such gene from Arabidopsis, AGL1, using RNA in situ hybridization. It is found that AGL1 is specifically expressed in particular regions of the gynoecium and ovule, only during and after floral development stage 7. AGL1 expression at the tip of the growing carpel primordia, along the margins of the ovary valves in developing and mature gynoecia and in specific regions of developing and mature ovules provides important insights into the possible roles of AGL1. It is proposed that AGL1 may have regulatory functions in the structural definition and/or function of the valve margins, in axis maintenance during ovule development, in nutritional supply to the growing ovule and embryo sac, and in pollen tube guidance. In the floral homeotic mutants ag-1, ap3-3 and ap2-2, AGL1 mRNA is expressed in an organ-dependent manner, suggesting that AGL1 is a carpel-specific gene and as such ultimately depends upon the carpel identity gene AG for proper gene expression.
MADS-box基因家族的几个成员已被证明是花发育的重要调节因子,控制着诸如花分生组织的形成和花器官身份的确定等研究充分的早期事件。其他功能未知的花特异性MADS-box基因已通过同源性分离出来,并被认为是控制花发育的调控层次结构的一部分。其中一些基因可能调节花发育的后期方面,例如单个花器官的发育,这在分子水平上研究较少。本文利用RNA原位杂交技术对拟南芥中的一个此类基因AGL1的表达模式进行了详细分析。研究发现,AGL1仅在花发育第7阶段及之后,在雌蕊和胚珠的特定区域特异性表达。AGL1在生长中的心皮原基顶端、发育中和成熟雌蕊的子房壁边缘以及发育中和成熟胚珠的特定区域的表达,为深入了解AGL可能发挥的作用提供了重要线索。研究提出,AGL1可能在瓣膜边缘的结构定义和/或功能、胚珠发育过程中的轴维持、向生长中的胚珠和胚囊的营养供应以及花粉管引导方面具有调节功能。在花同源异型突变体ag-1、ap3-3和ap2-2中,AGL1 mRNA以器官依赖的方式表达,这表明AGL1是一个心皮特异性基因,因此其正常基因表达最终依赖于心皮身份基因AG。